Božović-Jelisavčić, Ivanka

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Authority KeyName Variants
orcid::0000-0002-8047-8842
  • Božović-Jelisavčić, Ivanka (427)
  • Božović Jelisavčić, Ivanka (1)
Projects
ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, FAPESP, Brazil, NSERC, NRC, CFI, Canada, CERN, CONICYT, Chile, CAS, MOST, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, MPO CR, VSC CR, Czech Republic, DNRF, DNSRC, Lundbeck Foundation, Denmark, ARTEMIS, European Union, IN2P3-CNRS, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, HGF, MPG, AvH Foundation, Germany, GSRT, Greece, ISF, MINERVA, GIF, DIP, Benoziyo Center, Israel, INFN, Italy, MEXT, JSPS, Japan, CNRST, Morocco, FOM, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Wallenberg Foundation, Sweden, SER, SNSF, Cantons of Bern and Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, Royal Society, Leverhulme Trust, United Kingdom, DOE, NSF, United States of America, ICREA Physics and Detector R&D in HEP Experiments
ICREA HIGHTONE-P - HIGGS boson: A portal to new physics
ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, ARTEMIS, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Canton of Bern, Switzerland, Canton of Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, FAPESP, Brazil, NSERC, NRC, CFI, Canada, CERN, CONICYT, Chile, CAS, MOST, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, MPO CR, VSC CR, Czech Republic, DNRF, DNSRC, Lundbeck Foundation, Denmark, EPLANET, ERC, European Union, IN2P3-CNRS, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, HGF, MPG, AvH Foundation, Germany, GSRT, Greece, ISF, MINERVA, GIF, DIP, Benoziyo Center, Israel, INFN, Italy, MEXT, JSPS, Japan, CNRST, Morocco, FOM, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Wallenberg Foundation, Sweden, SER, SNSF, Cantons of Bern and Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, Royal Society, Leverhulme Trust, United Kingdom, DOE, NSF, United States of America, ICREA
ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, FWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, European Union, ERC, European Union, NSRF, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNSF, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, NSRF, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, BRF, Norway, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, Russian Federation, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Canton of Bern, Switzerland, Canton of Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA DESY
ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, ERC, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Canton of Bern, Switzerland, Canton of Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, European Union, ERC, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, Russian Federation, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Canton of Bern, Switzerland, Canton of Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA
ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, European Union, ERC, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, Russian Federation, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Cantons of Bern and Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, ARTEMIS, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Cantons of Bern, Switzerland, Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA
ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, FAPESP, Brazil, NSERC, NRC, CFI, Canada, CERN, CONICYT, Chile, CAS, MOST, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, MPO CR, VSC CR, Czech Republic, DNRF, DNSRC, Lundbeck Foundation, Denmark, EPLANET, ERC, European Union, IN2P3-CNRS, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, HGF, MPG, AvH Foundation, Germany, GSRT, Greece, ISF, MINERVA, GIF, DIP, Benoziyo Center, Israel, INFN, Italy, MEXT, JSPS, Japan, CNRST, Morocco, FOM, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Wallenberg Foundation, Sweden, SER, SNSF, Cantons of Bern, Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, Royal Society, Leverhulme Trust, United Kingdom, DOE, NSF, United States of America, ICREA ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, FWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, ERC, NSRF, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNSF, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, NSRF, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, BRF, Norway, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, Russian Federation, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MIZS, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Cantons of Bern and Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA
ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, FWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, European Union, ERC, European Union, NSRF, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNSF, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, NSRF, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, BRF, Norway, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, Russian Federation, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MIZS, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Canton of Bern, Switzerland, Canton of Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, FWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, European Union, ERC, European Union, NSRF, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNSF, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, NSRF, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, BRF, Norway, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, Russian Federation, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MIZS, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Cantons of Bern, Switzerland, Cantons of Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA
ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, FWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, European Union, ERC, European Union, NSRF, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNSF, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, NSRF, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, BRF, Norway, RCN, Norway, MNiSW, Poland, NCN, Poland, GRICES, Portugal, FCT, Portugal, MNE/IFA, Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MIZS, Slovenia, DST/NRF, South Africa, MINECO, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Canton of Bern, Switzerland, Canton of Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, FWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, European Union, ERC, European Union, NSRF, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNSF, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, NSRF, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, I-CORE, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, BRF, Norway, RCN, Norway, MNiSW, Poland, NCN, Poland, GRICES, Portugal, FCT, Portugal, MNE/IFA, Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MIZS, Slovenia, DST/NRF, South Africa, MINECO, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Canton of Bern, Switzerland, Canton of Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA
ANPCyT, Argentina, YerPhl, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, ARTEMIS, European Union, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Cantons of Bern, Switzerland, Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, [IN2P3-CNRS], ICREA ANPCyT, Argentina, YerPhl, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, ERC, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, Russian Federation, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Cantons of Bern and Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA
MC-PAD - Marie Curie Training Network on Particle Detectors AIDA-2020 - Advanced European Infrastructures for Detectors at Accelerators
ANPCyT, Argentina, ANPCyT, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, FWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, EPLANET, ERC, NSRF, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNSF, Georgia, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, NSRF, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP and Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, BRF, Norway, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, Russian Federation, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MIZS, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Cantons of Bern and Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society and Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA ANPCyT, Argentina, Argentina, YerPhI, Armenia, ARC, Australia, BMWF, Austria, ANAS, Azerbaijan, SSTC, Belarus, CNPq, Brazil, FAPESP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, CAS, China, MOST, China, NSFC, China, COLCIENCIAS, Colombia, MSMT CR, Czech Republic, MPO CR, Czech Republic, VSC CR, Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, ARTEMIS, European Union, IN2P3-CNRS, France, CEA-DSM/IRFU, France, GNAS, Georgia, BMBF, Germany, DFG, Germany, MPG, Germany, AvH Foundation, Germany, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, JSPS, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, RCN, Norway, MNiSW, Poland, GRICES, Portugal, FCT, Portugal, MERYS (MECTS), Romania, MES of Russia, ROSATOM, Russian Federation, JINR, MSTD, Serbia, MSSR, Slovakia, ARRS, Slovenia, MVZT, Slovenia, DST/NRF, South Africa, MICINN, Spain, SRC, Sweden, Wallenberg Foundation, Sweden, SER, Switzerland, SNSF, Switzerland, Cantons of Bern, Switzerland, Geneva, Switzerland, NSC, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, ICREA
ANPCyT, Argentina, Argentina, YerPhI, ICREA ANPCyT, Argentina, Yerevan Physics Institute, Armenia, ARC and DEST, Australia, Bundesministerium fur Wissenschaft und Forschung, Austria, National Academy of Sciences of Azerbaijan, State Committee on Science and Technologies of the Republic of Belarus, CNPq and FINEP, Brazil, NSERC, NRC, and CFI, Canada, CERN, CONICYT, Chile, NSFC, China, COLCIENCIAS, Colombia, Ministry of Education, Youth and Sports of the Czech Republic, Ministry of Industry and Trade of the Czech Republic, Danish Natural Science Research Council and the Lundbeck Foundation, European Commission
ANPCyT, Argentina, Yerevan Physics Institute, Armenia, ARC and DEST, Australia, Bundesministerium fur Wissenschaft und Forschung, Austria, National Academy of Sciences of Azerbaijan, State Committee on Science and Technologies of the Republic of Belarus, CNPq, FINEP, Brazil, NSERC, NRC, CFI, Canada, CERN, CONICYT, Chile, NSFC, China, COLCIENCIAS, Colombia, Ministry of Education, Youth and Sports of the Czech Republic, Ministry of Industry and Trade of the Czech Republic, Committee for Collaboration of the Czech Republic with CERN, Danish Natural Science Research Council, Lundbeck Foundation, European Commission, through the ARTEMIS Research Training Network, IN2P3-CNRS, Dapnia-CEA, France, Georgian Academy of Sciences, BMBF, Germany, HGF, DFG, MPG, Germany, Ministry of Education and Religion, GSRT, Greece, ISF, MINERVA, CIF, DIP, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, CNRST, Morocco, FOM, NWO, Netherlands, The Research Council of Norway, Ministry of Science and Higher Education, Poland, GRICES, FCT, Portugal, Ministry of Education and Research, Romania, Ministry of Education and Science of the Russian Federation, State Atomic Energy Corporation Rosatom, JINR, Ministry of Science, Serbia, Department of International Science and Technology Cooperation, Ministry of Education of the Slovak Republic, Slovenian Research Agency, Ministry of Higher Education, Science and Technology, Slovenia, Ministerio de Educacion y Ciencia, Spain, Swedish Research Council, Knut and Alice Wallenberg Foundation, Sweden, State Secretariat for Education and Science, Swiss National Science Foundation, Cantons of Bern and Geneva, Switzerland, National Science Council, Taiwan, TAEK, Turkey, Science and Technology Facilities Council, Leverhulme Trust, United Kingdom, DOE, NSF, United States of America ANPCyT, Argentina, Yerevan Physics Institute, Armenia, ARC, Australia, DEST, Australia, Bundesministerium furWissenschaft und Forschung, Austria, National Academy of Sciences of Azerbaijan, State Committee on Science AMP, Technologies of the Republic of Belarus, CNPq, Brazil, FINEP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, NSFC, China, Ministry of Education, Youth and Sports of the Czech Republic, Ministry of Industry and Trade of the Czech Republic, Committee for Collaboration of the Czech Republic, Danish Natural Science Research Council, European Commission, ARTEMIS Research Training Network, CNRS, France [IN2P3], Dapnia-CEA, France, Georgian Academy of Sciences, BMBF, Germany, DESY, Germany, DFG, Germany, MPG, Germany, Ministry of Education and Religion, Greece, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, Research Council of Norway, Ministry of Science and Higher Education, Poland, GRICES, Portugal, FCT, Portugal, Ministry of Education and Research, Romania, Ministry of Education and Science of the Russian Federation, Russian Federal Agency of Science and Innovations, Russian Federal Agency of Atomic Energy, JINR, Ministry of Science, Serbia, Department of International Science and Technology Cooperation, Ministry of Education of the Slovak Republic, Slovenian Research Agency, Slovenia, Ministry of Higher Education, Science and Technology, Slovenia, Ministerio de Educacion y Ciencia, Spain, Swedish Research Council, Knut and Alice Wallenberg Foundation, Sweden, State Secretariat for Education and Science, Switzerland, Swiss National Science Foundation, Switzerland, Cantons of Bern, Switzerland, Geneva, Switzerland, National Science Council, Taiwan, TAEK, Turkey, Science and Technology Facilities Council, United Kingdom, Leverhulme Trust, United Kingdom, DOE, NSF, United States of America
ANPCyT, Argentina, Yerevan Physics Institute, Armenia, ARC, Australia, DEST, Australia, Bundesministerium fur Wissenschaft und Forschung, Austria, National Academy of Sciences of Azerbaijan, State Committee on Science AMP, Technologies of the Republic of Belarus, CNPq, Brazil, FINEP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, NSFC, China, Ministry of Education, Youth and Sports of the Czech Republic, Ministry of Industry and Trade of the Czech Republic, Committee for Collaboration of the Czech Republic with CERN, Danish Natural Science Research Council, European Commission, through the ARTEMIS Research Training Network, CNRS, France [IN2P3], Dapnia-CEA, France, Georgian Academy of Sciences, BMBF, Germany, DESY, Germany, DFG, Germany, MPG, Germany, Ministry of Education and Religion, Greece, GSRT, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, CNRST, Morocco, FOM, Netherlands, NWO, Netherlands, Research Council of Norway, Ministry of Science and Higher Education, Poland, GRICES, Portugal, FCT, Portugal, Ministry of Education and Research, Romania, Ministry of Education and Science of the Russian Federation, Russian Federal Agency of Science and Innovations, Russian Federal Agency of Atomic Energy, JINR, Ministry of Science, Serbia, Department of International Science and Technology Cooperation, Ministry of Education of the Slovak Republic, Slovenian Research Agency, Slovenia, Ministry of Higher Education, Science and Technology, Slovenia, Ministerio de Educacion y Ciencia, Spain, Swedish Research Council, The Knut and Alice Wallenberg Foundation, Sweden, State Secretariat for Education and Science, Switzerland, Swiss National Science Foundation, Switzerland, Cantons of Bern and Geneva, Switzerland, National Science Council, Taiwan, TAEK, Turkey, Science and Technology Facilities Council, United Kingdomand, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America ANPCyT, Argentina, Yerevan Physics Institute, Armenia, ARC, Australia, DEST, Australia, Bundesministerium fur Wissenschaft und Forschung, Austria, National Academy of Sciences of Azerbaijan, State Committee on Science and Technologies of the Republic of Belarus, CNPq, Brazil, FINEP, Brazil, NSERC, Canada, NRC, Canada, CFI, Canada, CERN, CONICYT, Chile, NSFC, China, COLCIENCIAS, Colombia, Ministry of Education, Youth and Sports of the Czech Republic, Committee for Collaboration of the Czech Republic, DNRF, Denmark, DNSRC, Denmark, Lundbeck Foundation, Denmark, European Commission, through the ARTEMIS Research Training Network, IN2P3-CNRS, France, CEA-DSM/IRFU, France, Georgian Academy of Sciences, BMBF, Germany, DFG, Germany, HGF, Germany, MPG, Germany, Ministry of Education and Religion, Greece, ISF, Israel, MINERVA, Israel, GIF, Israel, DIP, Israel, Benoziyo Center, Israel, INFN, Italy, MEXT, Japan, CNRST, Morocco, FOM, Netherlands, Research Council of Norway, Ministry of Science and Higher Education, Poland, GRICES, Portugal, FCT, Portugal, Ministry of Education and Research, Romania, Ministry of Education and Science of the Russian Federation, JINR, Ministry of Science, Serbia, Department of International Science and Technology Cooperation, Ministry of Education of the Slovak Republic, Slovenian Research Agency, Ministry of Higher Education, Science and Technology, Slovenia, Ministerio de Educacion y Ciencia, Spain, Swedish Research Council, Knut and Alice Wallenberg Foundation, Sweden, State Secretariat for Education and Science, Switzerland, Swiss National Science Foundation, Switzerland, Cantons of Bern and Geneva, Switzerland, National Science Council, Taiwan, TAEK, Turkey, STFC, United Kingdom, Royal Society, United Kingdom, Leverhulme Trust, United Kingdom, DOE, United States of America, NSF, United States of America, Ministry of Industry and Trade of the Czech Republic, GSRT, Greece, State Atomic Energy Corporation ROSATOM, NWO, Netherlands

Author's Bibliography

Probing CPV mixing in the Higgs sector in VBF at 1 TeV ILC

Božović Jelisavčić, Ivanka; Vukašinović, Nataša; Kačarević, Goran

(2024)

TY  - CONF
AU  - Božović Jelisavčić, Ivanka
AU  - Vukašinović, Nataša
AU  - Kačarević, Goran
PY  - 2024
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/13125
AB  - Although the studies of tensor structure of the Higgs boson interactions with vector bosons and fermions at CMS and ATLAS experiments have established that the JPCquantum numbers of the Higgs boson should be 0++, small CP violation in the Higgs sector (i.e. = 10% contribution of the CP-odd state) cannot be excluded with the current experimental precision. We review a possibility to measure the CP violating mixing angle between scalar and pseudoscalar states of the extended Higgs sector, at 1 TeV ILC with the ILD detector.
C3  - Proceedings of Science
T1  - Probing CPV mixing in the Higgs sector in VBF at 1 TeV ILC
VL  - 449
UR  - https://hdl.handle.net/21.15107/rcub_vinar_13125
ER  - 
@conference{
author = "Božović Jelisavčić, Ivanka and Vukašinović, Nataša and Kačarević, Goran",
year = "2024",
abstract = "Although the studies of tensor structure of the Higgs boson interactions with vector bosons and fermions at CMS and ATLAS experiments have established that the JPCquantum numbers of the Higgs boson should be 0++, small CP violation in the Higgs sector (i.e. = 10% contribution of the CP-odd state) cannot be excluded with the current experimental precision. We review a possibility to measure the CP violating mixing angle between scalar and pseudoscalar states of the extended Higgs sector, at 1 TeV ILC with the ILD detector.",
journal = "Proceedings of Science",
title = "Probing CPV mixing in the Higgs sector in VBF at 1 TeV ILC",
volume = "449",
url = "https://hdl.handle.net/21.15107/rcub_vinar_13125"
}
Božović Jelisavčić, I., Vukašinović, N.,& Kačarević, G.. (2024). Probing CPV mixing in the Higgs sector in VBF at 1 TeV ILC. in Proceedings of Science, 449.
https://hdl.handle.net/21.15107/rcub_vinar_13125
Božović Jelisavčić I, Vukašinović N, Kačarević G. Probing CPV mixing in the Higgs sector in VBF at 1 TeV ILC. in Proceedings of Science. 2024;449.
https://hdl.handle.net/21.15107/rcub_vinar_13125 .
Božović Jelisavčić, Ivanka, Vukašinović, Nataša, Kačarević, Goran, "Probing CPV mixing in the Higgs sector in VBF at 1 TeV ILC" in Proceedings of Science, 449 (2024),
https://hdl.handle.net/21.15107/rcub_vinar_13125 .

Measurement of the σ x BR(H→ZZ*) at 350 GeV and 3 TeV center-of-mass energies CLIC

Milutinović-Dumbelović, Gordana; Božović-Jelisavčić, Ivanka; Vukašinović, Nataša; Kačarević, Goran; Radulović, M.; Stevanović, J.

(2023)

TY  - CONF
AU  - Milutinović-Dumbelović, Gordana
AU  - Božović-Jelisavčić, Ivanka
AU  - Vukašinović, Nataša
AU  - Kačarević, Goran
AU  - Radulović, M.
AU  - Stevanović, J.
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/11931
AB  - In this paper we present results of the determination of the statistical precision of the branching fraction measurement, for Higgs decaying to 𝑍 𝑍∗ pairs at 3 TeV and 350 GeV CLIC. Measurements are simulated with the CLIC_ILD detector model, taking into consideration all relevant physics and beam-induced background processes. It is shown that the product of the branching fraction 𝐵𝑅(𝐻 → 𝑍 𝑍∗ ) and the Higgs production cross-section can be measured with a relative statistical uncertainty of 3% (20%) at 3 TeV (350 GeV) center-of-mass energy, using semileptonic final states and assuming an integrated luminosity of 5 (1) ab−1 .
C3  - Proceedings of Science
T1  - Measurement of the σ x BR(H→ZZ*) at 350 GeV and 3 TeV center-of-mass energies CLIC
VL  - 427
SP  - 193246
DO  - 10.22323/1.427.0097
ER  - 
@conference{
author = "Milutinović-Dumbelović, Gordana and Božović-Jelisavčić, Ivanka and Vukašinović, Nataša and Kačarević, Goran and Radulović, M. and Stevanović, J.",
year = "2023",
abstract = "In this paper we present results of the determination of the statistical precision of the branching fraction measurement, for Higgs decaying to 𝑍 𝑍∗ pairs at 3 TeV and 350 GeV CLIC. Measurements are simulated with the CLIC_ILD detector model, taking into consideration all relevant physics and beam-induced background processes. It is shown that the product of the branching fraction 𝐵𝑅(𝐻 → 𝑍 𝑍∗ ) and the Higgs production cross-section can be measured with a relative statistical uncertainty of 3% (20%) at 3 TeV (350 GeV) center-of-mass energy, using semileptonic final states and assuming an integrated luminosity of 5 (1) ab−1 .",
journal = "Proceedings of Science",
title = "Measurement of the σ x BR(H→ZZ*) at 350 GeV and 3 TeV center-of-mass energies CLIC",
volume = "427",
pages = "193246",
doi = "10.22323/1.427.0097"
}
Milutinović-Dumbelović, G., Božović-Jelisavčić, I., Vukašinović, N., Kačarević, G., Radulović, M.,& Stevanović, J.. (2023). Measurement of the σ x BR(H→ZZ*) at 350 GeV and 3 TeV center-of-mass energies CLIC. in Proceedings of Science, 427, 193246.
https://doi.org/10.22323/1.427.0097
Milutinović-Dumbelović G, Božović-Jelisavčić I, Vukašinović N, Kačarević G, Radulović M, Stevanović J. Measurement of the σ x BR(H→ZZ*) at 350 GeV and 3 TeV center-of-mass energies CLIC. in Proceedings of Science. 2023;427:193246.
doi:10.22323/1.427.0097 .
Milutinović-Dumbelović, Gordana, Božović-Jelisavčić, Ivanka, Vukašinović, Nataša, Kačarević, Goran, Radulović, M., Stevanović, J., "Measurement of the σ x BR(H→ZZ*) at 350 GeV and 3 TeV center-of-mass energies CLIC" in Proceedings of Science, 427 (2023):193246,
https://doi.org/10.22323/1.427.0097 . .

Systematic uncertainties in integrated luminosity measurement at CEPC

Smiljanić, Ivan; Božović-Jelisavčić, Ivanka; Kačarević, Goran; Vukašinović, Nataša; Vidaković, Ivana; Reković, Vladimir

(2023)

TY  - CONF
AU  - Smiljanić, Ivan
AU  - Božović-Jelisavčić, Ivanka
AU  - Kačarević, Goran
AU  - Vukašinović, Nataša
AU  - Vidaković, Ivana
AU  - Reković, Vladimir
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/11932
AB  - The very forward region is one of the most challenging regions to instrument at a future e+e−  collider. Machine-detector interface at CEPC will include a calorimeter dedicated for precision measurement of the integrated luminosity at a permill level or better. We discuss a feasibility of such precision from the point of view of systematic effects arising from luminometer mechanical precision and positioning, beam-related requirements and physics background. Additionally, a method of the beam energy spread determination, initially proposed for FCC, is discussed for the CEPC beams, as well as the impact of beam energy spread uncertainty on integrated luminosity measurement and the precision of electroweak observables determination at the Z0  pole.
C3  - Proceedings of Science
T1  - Systematic uncertainties in integrated luminosity measurement at CEPC
VL  - 427
SP  - 193246
DO  - 10.22323/1.427.0086
ER  - 
@conference{
author = "Smiljanić, Ivan and Božović-Jelisavčić, Ivanka and Kačarević, Goran and Vukašinović, Nataša and Vidaković, Ivana and Reković, Vladimir",
year = "2023",
abstract = "The very forward region is one of the most challenging regions to instrument at a future e+e−  collider. Machine-detector interface at CEPC will include a calorimeter dedicated for precision measurement of the integrated luminosity at a permill level or better. We discuss a feasibility of such precision from the point of view of systematic effects arising from luminometer mechanical precision and positioning, beam-related requirements and physics background. Additionally, a method of the beam energy spread determination, initially proposed for FCC, is discussed for the CEPC beams, as well as the impact of beam energy spread uncertainty on integrated luminosity measurement and the precision of electroweak observables determination at the Z0  pole.",
journal = "Proceedings of Science",
title = "Systematic uncertainties in integrated luminosity measurement at CEPC",
volume = "427",
pages = "193246",
doi = "10.22323/1.427.0086"
}
Smiljanić, I., Božović-Jelisavčić, I., Kačarević, G., Vukašinović, N., Vidaković, I.,& Reković, V.. (2023). Systematic uncertainties in integrated luminosity measurement at CEPC. in Proceedings of Science, 427, 193246.
https://doi.org/10.22323/1.427.0086
Smiljanić I, Božović-Jelisavčić I, Kačarević G, Vukašinović N, Vidaković I, Reković V. Systematic uncertainties in integrated luminosity measurement at CEPC. in Proceedings of Science. 2023;427:193246.
doi:10.22323/1.427.0086 .
Smiljanić, Ivan, Božović-Jelisavčić, Ivanka, Kačarević, Goran, Vukašinović, Nataša, Vidaković, Ivana, Reković, Vladimir, "Systematic uncertainties in integrated luminosity measurement at CEPC" in Proceedings of Science, 427 (2023):193246,
https://doi.org/10.22323/1.427.0086 . .

Determination of the CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC

Vukašinović, Nataša; Božović-Jelisavčić, Ivanka; Kačarević, Goran; Radulović, M.; Stevanović, J.

(2023)

TY  - CONF
AU  - Vukašinović, Nataša
AU  - Božović-Jelisavčić, Ivanka
AU  - Kačarević, Goran
AU  - Radulović, M.
AU  - Stevanović, J.
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/11935
AB  - In this talk we discuss the CP violation in the Higgs sector under assumption that Higgs is a mixture of CP even and odd states. Study is done in ZZ-fusion, at the intermediate energy stage of CLIC, in full simulation of a detector and machine and physics related backgrounds. By measuring kinematic properties of electron and positron in the final state, in the Higgs exlusive decay to bb¯  to reduce backgrounds, we discuss the statistical precision of CP-violating mixing angle measurement with 2.5 ab−1  of data.
C3  - Proceedings of Science
T1  - Determination of the CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC
VL  - 427
SP  - 193246
DO  - 10.22323/1.427.0102
ER  - 
@conference{
author = "Vukašinović, Nataša and Božović-Jelisavčić, Ivanka and Kačarević, Goran and Radulović, M. and Stevanović, J.",
year = "2023",
abstract = "In this talk we discuss the CP violation in the Higgs sector under assumption that Higgs is a mixture of CP even and odd states. Study is done in ZZ-fusion, at the intermediate energy stage of CLIC, in full simulation of a detector and machine and physics related backgrounds. By measuring kinematic properties of electron and positron in the final state, in the Higgs exlusive decay to bb¯  to reduce backgrounds, we discuss the statistical precision of CP-violating mixing angle measurement with 2.5 ab−1  of data.",
journal = "Proceedings of Science",
title = "Determination of the CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC",
volume = "427",
pages = "193246",
doi = "10.22323/1.427.0102"
}
Vukašinović, N., Božović-Jelisavčić, I., Kačarević, G., Radulović, M.,& Stevanović, J.. (2023). Determination of the CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC. in Proceedings of Science, 427, 193246.
https://doi.org/10.22323/1.427.0102
Vukašinović N, Božović-Jelisavčić I, Kačarević G, Radulović M, Stevanović J. Determination of the CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC. in Proceedings of Science. 2023;427:193246.
doi:10.22323/1.427.0102 .
Vukašinović, Nataša, Božović-Jelisavčić, Ivanka, Kačarević, Goran, Radulović, M., Stevanović, J., "Determination of the CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC" in Proceedings of Science, 427 (2023):193246,
https://doi.org/10.22323/1.427.0102 . .

Measurement of the Higgs to γγ branching fraction at 3 TeV CLIC

Kačarević, Goran; Božović-Jelisavčić, Ivanka; Vukašinović, Nataša; Radulović, M.; Stevanović, J.

(2023)

TY  - CONF
AU  - Kačarević, Goran
AU  - Božović-Jelisavčić, Ivanka
AU  - Vukašinović, Nataša
AU  - Radulović, M.
AU  - Stevanović, J.
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/11940
AB  - In this talk we address a full simulation of experimental measurement of the Standard Model Higgs boson decaying to di-photon at 3 TeV center-of-mass energy at the Compact Linear Collider (CLIC). Photons are massless and do not couple to Higgs boson at the tree level, but rather are created in a loop exchange of heavy particles either from the Standard Model or beyond. Any deviation of the Higgs to 𝛾𝛾 branching fraction and consequently of the Higgs to photon coupling may indicate a New Physics. It is shown that the product of the Higgs production cross section in WW-fusion and BR (𝐻 −→ 𝛾𝛾) , as the observable for determination of the Higgs to photon coupling, can be measured with a relative statistical precision of 5.5%, assuming the integrated luminosity of 5 ab−1 and unpolarized beams.
C3  - Proceedings of Science
T1  - Measurement of the Higgs to γγ branching fraction at 3 TeV CLIC
VL  - 427
SP  - 193246
DO  - 10.22323/1.427.0092
ER  - 
@conference{
author = "Kačarević, Goran and Božović-Jelisavčić, Ivanka and Vukašinović, Nataša and Radulović, M. and Stevanović, J.",
year = "2023",
abstract = "In this talk we address a full simulation of experimental measurement of the Standard Model Higgs boson decaying to di-photon at 3 TeV center-of-mass energy at the Compact Linear Collider (CLIC). Photons are massless and do not couple to Higgs boson at the tree level, but rather are created in a loop exchange of heavy particles either from the Standard Model or beyond. Any deviation of the Higgs to 𝛾𝛾 branching fraction and consequently of the Higgs to photon coupling may indicate a New Physics. It is shown that the product of the Higgs production cross section in WW-fusion and BR (𝐻 −→ 𝛾𝛾) , as the observable for determination of the Higgs to photon coupling, can be measured with a relative statistical precision of 5.5%, assuming the integrated luminosity of 5 ab−1 and unpolarized beams.",
journal = "Proceedings of Science",
title = "Measurement of the Higgs to γγ branching fraction at 3 TeV CLIC",
volume = "427",
pages = "193246",
doi = "10.22323/1.427.0092"
}
Kačarević, G., Božović-Jelisavčić, I., Vukašinović, N., Radulović, M.,& Stevanović, J.. (2023). Measurement of the Higgs to γγ branching fraction at 3 TeV CLIC. in Proceedings of Science, 427, 193246.
https://doi.org/10.22323/1.427.0092
Kačarević G, Božović-Jelisavčić I, Vukašinović N, Radulović M, Stevanović J. Measurement of the Higgs to γγ branching fraction at 3 TeV CLIC. in Proceedings of Science. 2023;427:193246.
doi:10.22323/1.427.0092 .
Kačarević, Goran, Božović-Jelisavčić, Ivanka, Vukašinović, Nataša, Radulović, M., Stevanović, J., "Measurement of the Higgs to γγ branching fraction at 3 TeV CLIC" in Proceedings of Science, 427 (2023):193246,
https://doi.org/10.22323/1.427.0092 . .

Measurement of the CPV Higgs mixing angle in ZZ-fusion at 1 TeV ILC

Vukašinović, Nataša; Božović-Jelisavčić, Ivanka; Kačarević, Goran

(2023)

TY  - CONF
AU  - Vukašinović, Nataša
AU  - Božović-Jelisavčić, Ivanka
AU  - Kačarević, Goran
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/11588
AB  - Although the studies of tensor structure of the Higgs boson interactions with vector bosons and fermions at CMS and ATLAS experiments have established that the JPC quantum numbers of the Higgs boson should be 0++, small CP violation in the Higgs sector (up to 10% contribution of the CP-odd state) cannot be excluded with the current experimental precision. We review possibilities to measure CP violating mixing angle ΨCP between scalar and pseudoscalar states, at a linear electron-positron collider, at center-of-mass energy of 1 TeV.
C3  - LCWS 2023 : International Workshop on Future Linear Colliders
T1  - Measurement of the CPV Higgs mixing angle in ZZ-fusion at 1 TeV ILC
UR  - https://hdl.handle.net/21.15107/rcub_vinar_11588
ER  - 
@conference{
author = "Vukašinović, Nataša and Božović-Jelisavčić, Ivanka and Kačarević, Goran",
year = "2023",
abstract = "Although the studies of tensor structure of the Higgs boson interactions with vector bosons and fermions at CMS and ATLAS experiments have established that the JPC quantum numbers of the Higgs boson should be 0++, small CP violation in the Higgs sector (up to 10% contribution of the CP-odd state) cannot be excluded with the current experimental precision. We review possibilities to measure CP violating mixing angle ΨCP between scalar and pseudoscalar states, at a linear electron-positron collider, at center-of-mass energy of 1 TeV.",
journal = "LCWS 2023 : International Workshop on Future Linear Colliders",
title = "Measurement of the CPV Higgs mixing angle in ZZ-fusion at 1 TeV ILC",
url = "https://hdl.handle.net/21.15107/rcub_vinar_11588"
}
Vukašinović, N., Božović-Jelisavčić, I.,& Kačarević, G.. (2023). Measurement of the CPV Higgs mixing angle in ZZ-fusion at 1 TeV ILC. in LCWS 2023 : International Workshop on Future Linear Colliders.
https://hdl.handle.net/21.15107/rcub_vinar_11588
Vukašinović N, Božović-Jelisavčić I, Kačarević G. Measurement of the CPV Higgs mixing angle in ZZ-fusion at 1 TeV ILC. in LCWS 2023 : International Workshop on Future Linear Colliders. 2023;.
https://hdl.handle.net/21.15107/rcub_vinar_11588 .
Vukašinović, Nataša, Božović-Jelisavčić, Ivanka, Kačarević, Goran, "Measurement of the CPV Higgs mixing angle in ZZ-fusion at 1 TeV ILC" in LCWS 2023 : International Workshop on Future Linear Colliders (2023),
https://hdl.handle.net/21.15107/rcub_vinar_11588 .

Higgs physics at CLIC

Vukašinović, Nataša; Božović-Jelisavčić, Ivanka

(2022)

TY  - JOUR
AU  - Vukašinović, Nataša
AU  - Božović-Jelisavčić, Ivanka
PY  - 2022
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/13111
AB  - The Compact Linear Collider (CLIC) is a mature option for a future electron-positron collider operating at center-of-mass energies of up to 3 TeV. CLIC is foreseen in a staged approach with three center-of-mass energies, currently assumed to be 380, 1.5 and 3 TeV. This contribution discusses the physics potential of CLIC in the field of Higgs physics, based on the benchmark analyses using full detector simulation. The initial stage of operation allows study of Higgs production in Higgsstrahlung and WW-fusion, resulting in precise measurements of the production cross sections and the total Higgs-boson decay width. Operation at high energies will provide high-statistics samples of Higgs bosons enabling tight constraints on Higgs couplings and measurement of the Higgs self-coupling.
T2  - International Journal of Modern Physics A
T1  - Higgs physics at CLIC
VL  - 37
IS  - 7
SP  - 2240006
DO  - 10.1142/S0217751X22400061
ER  - 
@article{
author = "Vukašinović, Nataša and Božović-Jelisavčić, Ivanka",
year = "2022",
abstract = "The Compact Linear Collider (CLIC) is a mature option for a future electron-positron collider operating at center-of-mass energies of up to 3 TeV. CLIC is foreseen in a staged approach with three center-of-mass energies, currently assumed to be 380, 1.5 and 3 TeV. This contribution discusses the physics potential of CLIC in the field of Higgs physics, based on the benchmark analyses using full detector simulation. The initial stage of operation allows study of Higgs production in Higgsstrahlung and WW-fusion, resulting in precise measurements of the production cross sections and the total Higgs-boson decay width. Operation at high energies will provide high-statistics samples of Higgs bosons enabling tight constraints on Higgs couplings and measurement of the Higgs self-coupling.",
journal = "International Journal of Modern Physics A",
title = "Higgs physics at CLIC",
volume = "37",
number = "7",
pages = "2240006",
doi = "10.1142/S0217751X22400061"
}
Vukašinović, N.,& Božović-Jelisavčić, I.. (2022). Higgs physics at CLIC. in International Journal of Modern Physics A, 37(7), 2240006.
https://doi.org/10.1142/S0217751X22400061
Vukašinović N, Božović-Jelisavčić I. Higgs physics at CLIC. in International Journal of Modern Physics A. 2022;37(7):2240006.
doi:10.1142/S0217751X22400061 .
Vukašinović, Nataša, Božović-Jelisavčić, Ivanka, "Higgs physics at CLIC" in International Journal of Modern Physics A, 37, no. 7 (2022):2240006,
https://doi.org/10.1142/S0217751X22400061 . .

Systematic uncertainties in integrated luminosity measurement at CEPC

Smiljanić, Ivan; Božović-Jelisavčić, Ivanka; Kačarević, Goran; Vukašinović, Nataša; Vidaković, Ivana; Reković, Vladimir

(2022)

TY  - JOUR
AU  - Smiljanić, Ivan
AU  - Božović-Jelisavčić, Ivanka
AU  - Kačarević, Goran
AU  - Vukašinović, Nataša
AU  - Vidaković, Ivana
AU  - Reković, Vladimir
PY  - 2022
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10566
AB  - The very forward region is one of the most challenging regions to instrument at a future e + e - collider. At CEPC, machine-detector interface includes, among others, a calorimeter dedicated for precision measurement of the integrated luminosity at a per mill level or better. Here we review a feasibility of such precision, from the point of view of systematic effects arising from luminometer mechanical precision and positioning, beam-related requirements and physics background from two-photon processes. The impact of the beam energy spread and its uncertainty on the integrated luminosity precision is also discussed, as well as the achievable beam energy spread precision with the post-CDR CEPC beams. © 2022 IOP Publishing Ltd and Sissa Medialab.
T2  - Journal of Instrumentation
T1  - Systematic uncertainties in integrated luminosity measurement at CEPC
VL  - 17
IS  - 9
DO  - 10.1088/1748-0221/17/09/P09014
ER  - 
@article{
author = "Smiljanić, Ivan and Božović-Jelisavčić, Ivanka and Kačarević, Goran and Vukašinović, Nataša and Vidaković, Ivana and Reković, Vladimir",
year = "2022",
abstract = "The very forward region is one of the most challenging regions to instrument at a future e + e - collider. At CEPC, machine-detector interface includes, among others, a calorimeter dedicated for precision measurement of the integrated luminosity at a per mill level or better. Here we review a feasibility of such precision, from the point of view of systematic effects arising from luminometer mechanical precision and positioning, beam-related requirements and physics background from two-photon processes. The impact of the beam energy spread and its uncertainty on the integrated luminosity precision is also discussed, as well as the achievable beam energy spread precision with the post-CDR CEPC beams. © 2022 IOP Publishing Ltd and Sissa Medialab.",
journal = "Journal of Instrumentation",
title = "Systematic uncertainties in integrated luminosity measurement at CEPC",
volume = "17",
number = "9",
doi = "10.1088/1748-0221/17/09/P09014"
}
Smiljanić, I., Božović-Jelisavčić, I., Kačarević, G., Vukašinović, N., Vidaković, I.,& Reković, V.. (2022). Systematic uncertainties in integrated luminosity measurement at CEPC. in Journal of Instrumentation, 17(9).
https://doi.org/10.1088/1748-0221/17/09/P09014
Smiljanić I, Božović-Jelisavčić I, Kačarević G, Vukašinović N, Vidaković I, Reković V. Systematic uncertainties in integrated luminosity measurement at CEPC. in Journal of Instrumentation. 2022;17(9).
doi:10.1088/1748-0221/17/09/P09014 .
Smiljanić, Ivan, Božović-Jelisavčić, Ivanka, Kačarević, Goran, Vukašinović, Nataša, Vidaković, Ivana, Reković, Vladimir, "Systematic uncertainties in integrated luminosity measurement at CEPC" in Journal of Instrumentation, 17, no. 9 (2022),
https://doi.org/10.1088/1748-0221/17/09/P09014 . .
1
2
1

Erratum: Systematic uncertainties in integrated luminosity measurement at CEPC (Journal of Instrumentation (2022) 17 (P09014) DOI: 10.1088/1748-0221/17/09/P09014)

Smiljanić, Ivan; Božović-Jelisavčić, Ivanka; Kac̆arević, Goran; Vukašinović, Nataša; Vidaković, Ivana; Reković, Vladimir

(2022)

TY  - JOUR
AU  - Smiljanić, Ivan
AU  - Božović-Jelisavčić, Ivanka
AU  - Kac̆arević, Goran
AU  - Vukašinović, Nataša
AU  - Vidaković, Ivana
AU  - Reković, Vladimir
PY  - 2022
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10567
AB  - The very forward region is one of the most challenging regions to instrument at a future 𝑒 + 𝑒 − collider. At CEPC, machine-detector interface includes, among others, a calorimeter dedicated for precision measurement of the integrated luminosity at a per mill level or better. Here we review a feasibility of such precision, from the point of view of systematic effects arising from luminometer mechanical precision and positioning, beam-related requirements and physics background from two-photon processes. The impact of the beam energy spread and its uncertainty on the integrated luminosity precision is also discussed, as well as the achievable beam energy spread precision with the post-CDR CEPC beams
T2  - Journal of Instrumentation
T1  - Erratum: Systematic uncertainties in integrated luminosity measurement at CEPC (Journal of Instrumentation (2022) 17 (P09014) DOI: 10.1088/1748-0221/17/09/P09014)
VL  - 17
IS  - 12
SP  - E12001
DO  - 10.1088/1748-0221/17/12/E12001
ER  - 
@article{
author = "Smiljanić, Ivan and Božović-Jelisavčić, Ivanka and Kac̆arević, Goran and Vukašinović, Nataša and Vidaković, Ivana and Reković, Vladimir",
year = "2022",
abstract = "The very forward region is one of the most challenging regions to instrument at a future 𝑒 + 𝑒 − collider. At CEPC, machine-detector interface includes, among others, a calorimeter dedicated for precision measurement of the integrated luminosity at a per mill level or better. Here we review a feasibility of such precision, from the point of view of systematic effects arising from luminometer mechanical precision and positioning, beam-related requirements and physics background from two-photon processes. The impact of the beam energy spread and its uncertainty on the integrated luminosity precision is also discussed, as well as the achievable beam energy spread precision with the post-CDR CEPC beams",
journal = "Journal of Instrumentation",
title = "Erratum: Systematic uncertainties in integrated luminosity measurement at CEPC (Journal of Instrumentation (2022) 17 (P09014) DOI: 10.1088/1748-0221/17/09/P09014)",
volume = "17",
number = "12",
pages = "E12001",
doi = "10.1088/1748-0221/17/12/E12001"
}
Smiljanić, I., Božović-Jelisavčić, I., Kac̆arević, G., Vukašinović, N., Vidaković, I.,& Reković, V.. (2022). Erratum: Systematic uncertainties in integrated luminosity measurement at CEPC (Journal of Instrumentation (2022) 17 (P09014) DOI: 10.1088/1748-0221/17/09/P09014). in Journal of Instrumentation, 17(12), E12001.
https://doi.org/10.1088/1748-0221/17/12/E12001
Smiljanić I, Božović-Jelisavčić I, Kac̆arević G, Vukašinović N, Vidaković I, Reković V. Erratum: Systematic uncertainties in integrated luminosity measurement at CEPC (Journal of Instrumentation (2022) 17 (P09014) DOI: 10.1088/1748-0221/17/09/P09014). in Journal of Instrumentation. 2022;17(12):E12001.
doi:10.1088/1748-0221/17/12/E12001 .
Smiljanić, Ivan, Božović-Jelisavčić, Ivanka, Kac̆arević, Goran, Vukašinović, Nataša, Vidaković, Ivana, Reković, Vladimir, "Erratum: Systematic uncertainties in integrated luminosity measurement at CEPC (Journal of Instrumentation (2022) 17 (P09014) DOI: 10.1088/1748-0221/17/09/P09014)" in Journal of Instrumentation, 17, no. 12 (2022):E12001,
https://doi.org/10.1088/1748-0221/17/12/E12001 . .

CPV in e+e−H at 1 TeV ILC

Vukašinović, Nataša; Agatonović-Jovin, Tatjana; Božović-Jelisavčić, Ivanka; Kac̆arević, Goran; Milutinović-Dumbelović, Gordana; Smiljanić, Ivan; Radulović, Mirko M.; Stevanović, Jasna M.

(2022)

TY  - JOUR
AU  - Vukašinović, Nataša
AU  - Agatonović-Jovin, Tatjana
AU  - Božović-Jelisavčić, Ivanka
AU  - Kac̆arević, Goran
AU  - Milutinović-Dumbelović, Gordana
AU  - Smiljanić, Ivan
AU  - Radulović, Mirko M.
AU  - Stevanović, Jasna M.
PY  - 2022
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10465
AB  - CP violation is one of Sakharov’s conditions for the matter-antimatter asymmetry of the Universe. The experimentally observed size of CP violation is insufficient to account for this. Is CP violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of CP even and CP odd states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest studies at ILC.
T2  - Moscow University Physics Bulletin
T1  - CPV in e+e−H at 1 TeV ILC
VL  - 77
IS  - 2
SP  - 268
EP  - 269
DO  - 10.3103/S002713492202103X
ER  - 
@article{
author = "Vukašinović, Nataša and Agatonović-Jovin, Tatjana and Božović-Jelisavčić, Ivanka and Kac̆arević, Goran and Milutinović-Dumbelović, Gordana and Smiljanić, Ivan and Radulović, Mirko M. and Stevanović, Jasna M.",
year = "2022",
abstract = "CP violation is one of Sakharov’s conditions for the matter-antimatter asymmetry of the Universe. The experimentally observed size of CP violation is insufficient to account for this. Is CP violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of CP even and CP odd states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest studies at ILC.",
journal = "Moscow University Physics Bulletin",
title = "CPV in e+e−H at 1 TeV ILC",
volume = "77",
number = "2",
pages = "268-269",
doi = "10.3103/S002713492202103X"
}
Vukašinović, N., Agatonović-Jovin, T., Božović-Jelisavčić, I., Kac̆arević, G., Milutinović-Dumbelović, G., Smiljanić, I., Radulović, M. M.,& Stevanović, J. M.. (2022). CPV in e+e−H at 1 TeV ILC. in Moscow University Physics Bulletin, 77(2), 268-269.
https://doi.org/10.3103/S002713492202103X
Vukašinović N, Agatonović-Jovin T, Božović-Jelisavčić I, Kac̆arević G, Milutinović-Dumbelović G, Smiljanić I, Radulović MM, Stevanović JM. CPV in e+e−H at 1 TeV ILC. in Moscow University Physics Bulletin. 2022;77(2):268-269.
doi:10.3103/S002713492202103X .
Vukašinović, Nataša, Agatonović-Jovin, Tatjana, Božović-Jelisavčić, Ivanka, Kac̆arević, Goran, Milutinović-Dumbelović, Gordana, Smiljanić, Ivan, Radulović, Mirko M., Stevanović, Jasna M., "CPV in e+e−H at 1 TeV ILC" in Moscow University Physics Bulletin, 77, no. 2 (2022):268-269,
https://doi.org/10.3103/S002713492202103X . .

Determination of CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC

Vukašinović, Nataša; Božović-Jelisavčić, Ivanka

(2022)

TY  - CONF
AU  - Vukašinović, Nataša
AU  - Božović-Jelisavčić, Ivanka
PY  - 2022
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10759
AB  - CLIC is a mature project for a future staged e-e+ linear collider at CERN. It is designed to run at three different energy stages currently assumed to be 380 GeV, 1.5 TeV and 3 TeV. Staged energy approach enables exploring precision Higgs and top physics as well as the possibility for direct and indirect BSM searches. In this paper we present an overview of the Higgs physics together with preliminary results of the CPV study in ZZ-fusion at the intermediate energy stage.
C3  - Proceedings of Science
T1  - Determination of CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC
VL  - 414
IS  - 527
SP  - 187015
UR  - https://hdl.handle.net/21.15107/rcub_vinar_10759
ER  - 
@conference{
author = "Vukašinović, Nataša and Božović-Jelisavčić, Ivanka",
year = "2022",
abstract = "CLIC is a mature project for a future staged e-e+ linear collider at CERN. It is designed to run at three different energy stages currently assumed to be 380 GeV, 1.5 TeV and 3 TeV. Staged energy approach enables exploring precision Higgs and top physics as well as the possibility for direct and indirect BSM searches. In this paper we present an overview of the Higgs physics together with preliminary results of the CPV study in ZZ-fusion at the intermediate energy stage.",
journal = "Proceedings of Science",
title = "Determination of CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC",
volume = "414",
number = "527",
pages = "187015",
url = "https://hdl.handle.net/21.15107/rcub_vinar_10759"
}
Vukašinović, N.,& Božović-Jelisavčić, I.. (2022). Determination of CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC. in Proceedings of Science, 414(527), 187015.
https://hdl.handle.net/21.15107/rcub_vinar_10759
Vukašinović N, Božović-Jelisavčić I. Determination of CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC. in Proceedings of Science. 2022;414(527):187015.
https://hdl.handle.net/21.15107/rcub_vinar_10759 .
Vukašinović, Nataša, Božović-Jelisavčić, Ivanka, "Determination of CPV Higgs mixing angle in ZZ-fusion at 1.4 TeV CLIC" in Proceedings of Science, 414, no. 527 (2022):187015,
https://hdl.handle.net/21.15107/rcub_vinar_10759 .

Higgs Physics with Future Linear Colliders

Božović-Jelisavčić, Ivanka

(2022)

TY  - JOUR
AU  - Božović-Jelisavčić, Ivanka
PY  - 2022
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10434
AB  - This paper, based on the invited talk at the 20th Lomonosov Conference of Elementary Particle Physics, provides short overview of the Higgs physics program at future linear colliders as Higgs factories.
T2  - Moscow University Physics Bulletin
T1  - Higgs Physics with Future Linear Colliders
VL  - 77
IS  - 2
SP  - 180
EP  - 183
DO  - 10.3103/S0027134922020199
ER  - 
@article{
author = "Božović-Jelisavčić, Ivanka",
year = "2022",
abstract = "This paper, based on the invited talk at the 20th Lomonosov Conference of Elementary Particle Physics, provides short overview of the Higgs physics program at future linear colliders as Higgs factories.",
journal = "Moscow University Physics Bulletin",
title = "Higgs Physics with Future Linear Colliders",
volume = "77",
number = "2",
pages = "180-183",
doi = "10.3103/S0027134922020199"
}
Božović-Jelisavčić, I.. (2022). Higgs Physics with Future Linear Colliders. in Moscow University Physics Bulletin, 77(2), 180-183.
https://doi.org/10.3103/S0027134922020199
Božović-Jelisavčić I. Higgs Physics with Future Linear Colliders. in Moscow University Physics Bulletin. 2022;77(2):180-183.
doi:10.3103/S0027134922020199 .
Božović-Jelisavčić, Ivanka, "Higgs Physics with Future Linear Colliders" in Moscow University Physics Bulletin, 77, no. 2 (2022):180-183,
https://doi.org/10.3103/S0027134922020199 . .

CP violation in the Higgs sector at ILC

Agatonović-Jovin, Tatjana; Vukašinović, Nataša; Božović-Jelisavčić, Ivanka; Kac̆arević, Goran; Radulović, Mirko M.; Stevanović, Jasna M.; Milutinović Dumbelović, Gordana; Smiljanić, Ivan

(2021)

TY  - CONF
AU  - Agatonović-Jovin, Tatjana
AU  - Vukašinović, Nataša
AU  - Božović-Jelisavčić, Ivanka
AU  - Kac̆arević, Goran
AU  - Radulović, Mirko M.
AU  - Stevanović, Jasna M.
AU  - Milutinović Dumbelović, Gordana
AU  - Smiljanić, Ivan
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10264
AB  - CP violation is one of Sakharov's condition for the matter-antimatter asymmetry of the Universe. The experimentally observed size of CP violation is insufficient to account for this. Is CP violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of CP even and CP odd states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest studies at ILC.
C3  - Proceedings of Science
T1  - CP violation in the Higgs sector at ILC
VL  - 398
SP  - 495
DO  - 10.22323/1.398.0495
ER  - 
@conference{
author = "Agatonović-Jovin, Tatjana and Vukašinović, Nataša and Božović-Jelisavčić, Ivanka and Kac̆arević, Goran and Radulović, Mirko M. and Stevanović, Jasna M. and Milutinović Dumbelović, Gordana and Smiljanić, Ivan",
year = "2021",
abstract = "CP violation is one of Sakharov's condition for the matter-antimatter asymmetry of the Universe. The experimentally observed size of CP violation is insufficient to account for this. Is CP violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of CP even and CP odd states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest studies at ILC.",
journal = "Proceedings of Science",
title = "CP violation in the Higgs sector at ILC",
volume = "398",
pages = "495",
doi = "10.22323/1.398.0495"
}
Agatonović-Jovin, T., Vukašinović, N., Božović-Jelisavčić, I., Kac̆arević, G., Radulović, M. M., Stevanović, J. M., Milutinović Dumbelović, G.,& Smiljanić, I.. (2021). CP violation in the Higgs sector at ILC. in Proceedings of Science, 398, 495.
https://doi.org/10.22323/1.398.0495
Agatonović-Jovin T, Vukašinović N, Božović-Jelisavčić I, Kac̆arević G, Radulović MM, Stevanović JM, Milutinović Dumbelović G, Smiljanić I. CP violation in the Higgs sector at ILC. in Proceedings of Science. 2021;398:495.
doi:10.22323/1.398.0495 .
Agatonović-Jovin, Tatjana, Vukašinović, Nataša, Božović-Jelisavčić, Ivanka, Kac̆arević, Goran, Radulović, Mirko M., Stevanović, Jasna M., Milutinović Dumbelović, Gordana, Smiljanić, Ivan, "CP violation in the Higgs sector at ILC" in Proceedings of Science, 398 (2021):495,
https://doi.org/10.22323/1.398.0495 . .
1

Measurement of the H to ZZ branching fraction at 350 GeV and 3 TeV CLIC

Vukašinović, Nataša; Božović-Jelisavčić, Ivanka; Smiljanić, Ivan; Kačarević, Goran; Milutinović-Dumbelović, Gordana; Agatonović-Jovin, Tatjana; Radulović, Mirko M.; Stevanović, Jasna M.

(2021)

TY  - CONF
AU  - Vukašinović, Nataša
AU  - Božović-Jelisavčić, Ivanka
AU  - Smiljanić, Ivan
AU  - Kačarević, Goran
AU  - Milutinović-Dumbelović, Gordana
AU  - Agatonović-Jovin, Tatjana
AU  - Radulović, Mirko M.
AU  - Stevanović, Jasna M.
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9990
AB  - The violation of CP symmetry is one of Sakharov's conditions for the matter-antimatter asymmetry of the Universe. Currently known sources of CP violation in the quark and neutrino sectors are insufficient to account for this. Is CP also violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of even and odd CP states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest and ongoing studies at ILC.
C3  - International Workshop on Future Linear Colliders, LCWS 2021
T1  - Measurement of the H to ZZ branching fraction at 350 GeV and 3 TeV CLIC
UR  - https://hdl.handle.net/21.15107/rcub_vinar_9990
ER  - 
@conference{
author = "Vukašinović, Nataša and Božović-Jelisavčić, Ivanka and Smiljanić, Ivan and Kačarević, Goran and Milutinović-Dumbelović, Gordana and Agatonović-Jovin, Tatjana and Radulović, Mirko M. and Stevanović, Jasna M.",
year = "2021",
abstract = "The violation of CP symmetry is one of Sakharov's conditions for the matter-antimatter asymmetry of the Universe. Currently known sources of CP violation in the quark and neutrino sectors are insufficient to account for this. Is CP also violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of even and odd CP states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest and ongoing studies at ILC.",
journal = "International Workshop on Future Linear Colliders, LCWS 2021",
title = "Measurement of the H to ZZ branching fraction at 350 GeV and 3 TeV CLIC",
url = "https://hdl.handle.net/21.15107/rcub_vinar_9990"
}
Vukašinović, N., Božović-Jelisavčić, I., Smiljanić, I., Kačarević, G., Milutinović-Dumbelović, G., Agatonović-Jovin, T., Radulović, M. M.,& Stevanović, J. M.. (2021). Measurement of the H to ZZ branching fraction at 350 GeV and 3 TeV CLIC. in International Workshop on Future Linear Colliders, LCWS 2021.
https://hdl.handle.net/21.15107/rcub_vinar_9990
Vukašinović N, Božović-Jelisavčić I, Smiljanić I, Kačarević G, Milutinović-Dumbelović G, Agatonović-Jovin T, Radulović MM, Stevanović JM. Measurement of the H to ZZ branching fraction at 350 GeV and 3 TeV CLIC. in International Workshop on Future Linear Colliders, LCWS 2021. 2021;.
https://hdl.handle.net/21.15107/rcub_vinar_9990 .
Vukašinović, Nataša, Božović-Jelisavčić, Ivanka, Smiljanić, Ivan, Kačarević, Goran, Milutinović-Dumbelović, Gordana, Agatonović-Jovin, Tatjana, Radulović, Mirko M., Stevanović, Jasna M., "Measurement of the H to ZZ branching fraction at 350 GeV and 3 TeV CLIC" in International Workshop on Future Linear Colliders, LCWS 2021 (2021),
https://hdl.handle.net/21.15107/rcub_vinar_9990 .

Integrated luminosity measurement at CEPC

Smiljanić, Ivan; Božović-Jelisavčić, Ivanka; Kačarević, Goran; Vukašinović, Nataša; Agatonović-Jovin, Tatjana; Milutinović-Dumbelović, Gordana; Stevanović, Jasna M.; Radulović, Mirko M.

(2021)

TY  - CONF
AU  - Smiljanić, Ivan
AU  - Božović-Jelisavčić, Ivanka
AU  - Kačarević, Goran
AU  - Vukašinović, Nataša
AU  - Agatonović-Jovin, Tatjana
AU  - Milutinović-Dumbelović, Gordana
AU  - Stevanović, Jasna M.
AU  - Radulović, Mirko M.
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9992
AB  - The very forward region is one of the most challenging regions to instrument at a future e+e- collider. At CEPC, machine-detector interface includes, among others, a calorimeter dedicated for precision measurement of the integrated luminosity at a permille level or better. Here we review a feasibility of such precision, from the point of view of luminometer mechanical precision and positioning, beam-related requirements and physics background. A method of the effective center-of-mass determination from e+e-→μ+μ-, initially proposed for FCC, is also discussed for the CEPC beams.
C3  - International Workshop on Future Linear Colliders, LCWS 2021
T1  - Integrated luminosity measurement at CEPC
UR  - https://hdl.handle.net/21.15107/rcub_vinar_9992
ER  - 
@conference{
author = "Smiljanić, Ivan and Božović-Jelisavčić, Ivanka and Kačarević, Goran and Vukašinović, Nataša and Agatonović-Jovin, Tatjana and Milutinović-Dumbelović, Gordana and Stevanović, Jasna M. and Radulović, Mirko M.",
year = "2021",
abstract = "The very forward region is one of the most challenging regions to instrument at a future e+e- collider. At CEPC, machine-detector interface includes, among others, a calorimeter dedicated for precision measurement of the integrated luminosity at a permille level or better. Here we review a feasibility of such precision, from the point of view of luminometer mechanical precision and positioning, beam-related requirements and physics background. A method of the effective center-of-mass determination from e+e-→μ+μ-, initially proposed for FCC, is also discussed for the CEPC beams.",
journal = "International Workshop on Future Linear Colliders, LCWS 2021",
title = "Integrated luminosity measurement at CEPC",
url = "https://hdl.handle.net/21.15107/rcub_vinar_9992"
}
Smiljanić, I., Božović-Jelisavčić, I., Kačarević, G., Vukašinović, N., Agatonović-Jovin, T., Milutinović-Dumbelović, G., Stevanović, J. M.,& Radulović, M. M.. (2021). Integrated luminosity measurement at CEPC. in International Workshop on Future Linear Colliders, LCWS 2021.
https://hdl.handle.net/21.15107/rcub_vinar_9992
Smiljanić I, Božović-Jelisavčić I, Kačarević G, Vukašinović N, Agatonović-Jovin T, Milutinović-Dumbelović G, Stevanović JM, Radulović MM. Integrated luminosity measurement at CEPC. in International Workshop on Future Linear Colliders, LCWS 2021. 2021;.
https://hdl.handle.net/21.15107/rcub_vinar_9992 .
Smiljanić, Ivan, Božović-Jelisavčić, Ivanka, Kačarević, Goran, Vukašinović, Nataša, Agatonović-Jovin, Tatjana, Milutinović-Dumbelović, Gordana, Stevanović, Jasna M., Radulović, Mirko M., "Integrated luminosity measurement at CEPC" in International Workshop on Future Linear Colliders, LCWS 2021 (2021),
https://hdl.handle.net/21.15107/rcub_vinar_9992 .
2

Probing the CP properties of the Higgs sector at ILC

Agatonović-Jovin, Tatjana; Božović-Jelisavčić, Ivanka; Smiljanić, Ivan; Kačarević, Goran; Vukašinović, Nataša; Milutinović-Dumbelović, Gordana; Stevanović, Jasna M.; Radulović, Mirko M.; Jeans, Daniel T.

(2021)

TY  - CONF
AU  - Agatonović-Jovin, Tatjana
AU  - Božović-Jelisavčić, Ivanka
AU  - Smiljanić, Ivan
AU  - Kačarević, Goran
AU  - Vukašinović, Nataša
AU  - Milutinović-Dumbelović, Gordana
AU  - Stevanović, Jasna M.
AU  - Radulović, Mirko M.
AU  - Jeans, Daniel T.
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9993
AB  - The violation of CP symmetry is one of Sakharov's conditions for the matter-antimatter asymmetry of the Universe. Currently known sources of CP violation in the quark and neutrino sectors are insufficient to account for this. Is CP also violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of even and odd CP states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest and ongoing studies at ILC.
C3  - International Workshop on Future Linear Colliders, LCWS 2021
T1  - Probing the CP properties of the Higgs sector at ILC
UR  - https://hdl.handle.net/21.15107/rcub_vinar_9993
ER  - 
@conference{
author = "Agatonović-Jovin, Tatjana and Božović-Jelisavčić, Ivanka and Smiljanić, Ivan and Kačarević, Goran and Vukašinović, Nataša and Milutinović-Dumbelović, Gordana and Stevanović, Jasna M. and Radulović, Mirko M. and Jeans, Daniel T.",
year = "2021",
abstract = "The violation of CP symmetry is one of Sakharov's conditions for the matter-antimatter asymmetry of the Universe. Currently known sources of CP violation in the quark and neutrino sectors are insufficient to account for this. Is CP also violated in the Higgs sector? Could the SM-like Higgs boson be a mixture of even and odd CP states of an extended Higgs sector? With what precision could such effects be measured at future electron-positron colliders? These questions will be discussed in the light of the latest and ongoing studies at ILC.",
journal = "International Workshop on Future Linear Colliders, LCWS 2021",
title = "Probing the CP properties of the Higgs sector at ILC",
url = "https://hdl.handle.net/21.15107/rcub_vinar_9993"
}
Agatonović-Jovin, T., Božović-Jelisavčić, I., Smiljanić, I., Kačarević, G., Vukašinović, N., Milutinović-Dumbelović, G., Stevanović, J. M., Radulović, M. M.,& Jeans, D. T.. (2021). Probing the CP properties of the Higgs sector at ILC. in International Workshop on Future Linear Colliders, LCWS 2021.
https://hdl.handle.net/21.15107/rcub_vinar_9993
Agatonović-Jovin T, Božović-Jelisavčić I, Smiljanić I, Kačarević G, Vukašinović N, Milutinović-Dumbelović G, Stevanović JM, Radulović MM, Jeans DT. Probing the CP properties of the Higgs sector at ILC. in International Workshop on Future Linear Colliders, LCWS 2021. 2021;.
https://hdl.handle.net/21.15107/rcub_vinar_9993 .
Agatonović-Jovin, Tatjana, Božović-Jelisavčić, Ivanka, Smiljanić, Ivan, Kačarević, Goran, Vukašinović, Nataša, Milutinović-Dumbelović, Gordana, Stevanović, Jasna M., Radulović, Mirko M., Jeans, Daniel T., "Probing the CP properties of the Higgs sector at ILC" in International Workshop on Future Linear Colliders, LCWS 2021 (2021),
https://hdl.handle.net/21.15107/rcub_vinar_9993 .

Measurement of the Higgs branching ratio BR(H → γγ) at 3 TeV CLIC

Kačarević, Goran; Božović-Jelisavčić, Ivanka; Vukašinović, Nataša; Milutinović-Dumbelović, Gordana; Radulović, Mirko M.; Stevanović, Jasna M.; Agatonović-Jovin, Tatjana

(2021)

TY  - CONF
AU  - Kačarević, Goran
AU  - Božović-Jelisavčić, Ivanka
AU  - Vukašinović, Nataša
AU  - Milutinović-Dumbelović, Gordana
AU  - Radulović, Mirko M.
AU  - Stevanović, Jasna M.
AU  - Agatonović-Jovin, Tatjana
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9995
AB  - In this paper we address the potential of a 3 TeV center-of-mass energy Compact Linear Collider (CLIC) to measure the Standard Model (SM) Higgs boson decay to two photons. Since photons are massless, they are not coupled to the Higgs boson at tree level, but they are created in a loop exchange of heavy particles either from the Standard Model or beyond. Any deviation of the effective H → γγ branching ratio and consequently of the Higgs to photon coupling may indicate New Physics. The Higgs decay to two photons is thus an interesting probe of the Higgs sector, both at the running and future experiments. A similar study has been performed at 1.4 TeV CLIC, where the statistical uncertainty is determined to be 15% for an integrated luminosity of 1.5 ab−1 with unpolarized beams. This study is performed using a full simulation of the detector for CLIC and by considering all relevant physics and beam-induced processes in a full reconstruction chain. The measurement is simulated on 5000 pseudo-experiments and the relative statistical uncertainty is extracted from the pull distribution. It is shown that the Higgs production cross-section in W+W− fusion times the branching ratio BR(H → γγ) can be measured with a relative statistical accuracy of 8.2%, assuming an integrated luminosity of 5 ab−1 with unpolarized beams.
C3  - International Workshop on Future Linear Colliders, LCWS 2021
T1  - Measurement of the Higgs branching ratio BR(H → γγ) at 3 TeV CLIC
UR  - https://hdl.handle.net/21.15107/rcub_vinar_9995
ER  - 
@conference{
author = "Kačarević, Goran and Božović-Jelisavčić, Ivanka and Vukašinović, Nataša and Milutinović-Dumbelović, Gordana and Radulović, Mirko M. and Stevanović, Jasna M. and Agatonović-Jovin, Tatjana",
year = "2021",
abstract = "In this paper we address the potential of a 3 TeV center-of-mass energy Compact Linear Collider (CLIC) to measure the Standard Model (SM) Higgs boson decay to two photons. Since photons are massless, they are not coupled to the Higgs boson at tree level, but they are created in a loop exchange of heavy particles either from the Standard Model or beyond. Any deviation of the effective H → γγ branching ratio and consequently of the Higgs to photon coupling may indicate New Physics. The Higgs decay to two photons is thus an interesting probe of the Higgs sector, both at the running and future experiments. A similar study has been performed at 1.4 TeV CLIC, where the statistical uncertainty is determined to be 15% for an integrated luminosity of 1.5 ab−1 with unpolarized beams. This study is performed using a full simulation of the detector for CLIC and by considering all relevant physics and beam-induced processes in a full reconstruction chain. The measurement is simulated on 5000 pseudo-experiments and the relative statistical uncertainty is extracted from the pull distribution. It is shown that the Higgs production cross-section in W+W− fusion times the branching ratio BR(H → γγ) can be measured with a relative statistical accuracy of 8.2%, assuming an integrated luminosity of 5 ab−1 with unpolarized beams.",
journal = "International Workshop on Future Linear Colliders, LCWS 2021",
title = "Measurement of the Higgs branching ratio BR(H → γγ) at 3 TeV CLIC",
url = "https://hdl.handle.net/21.15107/rcub_vinar_9995"
}
Kačarević, G., Božović-Jelisavčić, I., Vukašinović, N., Milutinović-Dumbelović, G., Radulović, M. M., Stevanović, J. M.,& Agatonović-Jovin, T.. (2021). Measurement of the Higgs branching ratio BR(H → γγ) at 3 TeV CLIC. in International Workshop on Future Linear Colliders, LCWS 2021.
https://hdl.handle.net/21.15107/rcub_vinar_9995
Kačarević G, Božović-Jelisavčić I, Vukašinović N, Milutinović-Dumbelović G, Radulović MM, Stevanović JM, Agatonović-Jovin T. Measurement of the Higgs branching ratio BR(H → γγ) at 3 TeV CLIC. in International Workshop on Future Linear Colliders, LCWS 2021. 2021;.
https://hdl.handle.net/21.15107/rcub_vinar_9995 .
Kačarević, Goran, Božović-Jelisavčić, Ivanka, Vukašinović, Nataša, Milutinović-Dumbelović, Gordana, Radulović, Mirko M., Stevanović, Jasna M., Agatonović-Jovin, Tatjana, "Measurement of the Higgs branching ratio BR(H → γγ) at 3 TeV CLIC" in International Workshop on Future Linear Colliders, LCWS 2021 (2021),
https://hdl.handle.net/21.15107/rcub_vinar_9995 .

Integrated luminosity measurement at CEPC

Smiljanić, Ivan; Božović-Jelisavčić, Ivanka; Kac̆arević, Goran; Hou, Sen; Zhu, Hongbu; Zhu, Kai

(2021)

TY  - CONF
AU  - Smiljanić, Ivan
AU  - Božović-Jelisavčić, Ivanka
AU  - Kac̆arević, Goran
AU  - Hou, Sen
AU  - Zhu, Hongbu
AU  - Zhu, Kai
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9806
AB  - The very forward region of a detector at future e+e- collider is the one of the most challenging regions to instrument. A luminometer - compact calorimeter dedicated for precision measurement of the integrated luminosity at a permille level or better is needed. Here we review a feasibility of such precision at CEPC, considering detector mechanical precision and beam-related requirements. We also discuss capabilities of experimental determination of the effective centre-of-mass energy determination, from the perspective of integrated luminosity precision requirements at the Z0 pole. © Copyright owned by the author(s) under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (CC BY-NC-ND 4.0).
C3  - Proceedings of Science
T1  - Integrated luminosity measurement at CEPC
VL  - 390
UR  - https://hdl.handle.net/21.15107/rcub_vinar_9806
ER  - 
@conference{
author = "Smiljanić, Ivan and Božović-Jelisavčić, Ivanka and Kac̆arević, Goran and Hou, Sen and Zhu, Hongbu and Zhu, Kai",
year = "2021",
abstract = "The very forward region of a detector at future e+e- collider is the one of the most challenging regions to instrument. A luminometer - compact calorimeter dedicated for precision measurement of the integrated luminosity at a permille level or better is needed. Here we review a feasibility of such precision at CEPC, considering detector mechanical precision and beam-related requirements. We also discuss capabilities of experimental determination of the effective centre-of-mass energy determination, from the perspective of integrated luminosity precision requirements at the Z0 pole. © Copyright owned by the author(s) under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (CC BY-NC-ND 4.0).",
journal = "Proceedings of Science",
title = "Integrated luminosity measurement at CEPC",
volume = "390",
url = "https://hdl.handle.net/21.15107/rcub_vinar_9806"
}
Smiljanić, I., Božović-Jelisavčić, I., Kac̆arević, G., Hou, S., Zhu, H.,& Zhu, K.. (2021). Integrated luminosity measurement at CEPC. in Proceedings of Science, 390.
https://hdl.handle.net/21.15107/rcub_vinar_9806
Smiljanić I, Božović-Jelisavčić I, Kac̆arević G, Hou S, Zhu H, Zhu K. Integrated luminosity measurement at CEPC. in Proceedings of Science. 2021;390.
https://hdl.handle.net/21.15107/rcub_vinar_9806 .
Smiljanić, Ivan, Božović-Jelisavčić, Ivanka, Kac̆arević, Goran, Hou, Sen, Zhu, Hongbu, Zhu, Kai, "Integrated luminosity measurement at CEPC" in Proceedings of Science, 390 (2021),
https://hdl.handle.net/21.15107/rcub_vinar_9806 .

International Large Detector: Interim Design Report

Abramowicz, Halina; Agatonović-Jovin, Tatjana; Alonso, Oscar; Amjad, Mohammad Sohail; An, Fenfen; Božović-Jelisavčić, Ivanka; Kačarević, Goran; Smiljanić, Ivan; Vukašinović, Nataša

(2020)

TY  - RPRT
AU  - Abramowicz, Halina
AU  - Agatonović-Jovin, Tatjana
AU  - Alonso, Oscar
AU  - Amjad, Mohammad Sohail
AU  - An, Fenfen
AU  - Božović-Jelisavčić, Ivanka
AU  - Kačarević, Goran
AU  - Smiljanić, Ivan
AU  - Vukašinović, Nataša
PY  - 2020
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/12020
AB  - The ILD detector is proposed for an electron-positron collider with collision centre-of-mass energies from 90~\GeV~to about 1~\TeV. It has been developed over the last 10 years by an international team of scientists with the goal to design and eventually propose a fully integrated detector, primarily for the International Linear Collider, ILC. In this report the fundamental ideas and concepts behind the ILD detector are discussed and the technologies needed for the realisation of the detector are reviewed. The document starts with a short review of the science goals of the ILC, and how the goals can be achieved today with the detector technologies at hand. After a discussion of the ILC and the environment in which the experiment will take place, the detector is described in more detail, including the status of the development of the technologies foreseen for each subdetector. The integration of the different sub-systems into an integrated detector is discussed, as is the interface between the detector and the collider. This is followed by a concise summary of the benchmarking which has been performed in order to find an optimal balance between performance and cost. To the end the costing methodology used by ILD is presented, and an updated cost estimate for the detector is presented. The report closes with a summary of the current status and of planned future actions.
T2  - arXiv.org
T1  - International Large Detector: Interim Design Report
SP  - 1
EP  - 162
DO  - 10.48550/arXiv.2003.01116
ER  - 
@techreport{
author = "Abramowicz, Halina and Agatonović-Jovin, Tatjana and Alonso, Oscar and Amjad, Mohammad Sohail and An, Fenfen and Božović-Jelisavčić, Ivanka and Kačarević, Goran and Smiljanić, Ivan and Vukašinović, Nataša",
year = "2020",
abstract = "The ILD detector is proposed for an electron-positron collider with collision centre-of-mass energies from 90~\GeV~to about 1~\TeV. It has been developed over the last 10 years by an international team of scientists with the goal to design and eventually propose a fully integrated detector, primarily for the International Linear Collider, ILC. In this report the fundamental ideas and concepts behind the ILD detector are discussed and the technologies needed for the realisation of the detector are reviewed. The document starts with a short review of the science goals of the ILC, and how the goals can be achieved today with the detector technologies at hand. After a discussion of the ILC and the environment in which the experiment will take place, the detector is described in more detail, including the status of the development of the technologies foreseen for each subdetector. The integration of the different sub-systems into an integrated detector is discussed, as is the interface between the detector and the collider. This is followed by a concise summary of the benchmarking which has been performed in order to find an optimal balance between performance and cost. To the end the costing methodology used by ILD is presented, and an updated cost estimate for the detector is presented. The report closes with a summary of the current status and of planned future actions.",
journal = "arXiv.org",
title = "International Large Detector: Interim Design Report",
pages = "1-162",
doi = "10.48550/arXiv.2003.01116"
}
Abramowicz, H., Agatonović-Jovin, T., Alonso, O., Amjad, M. S., An, F., Božović-Jelisavčić, I., Kačarević, G., Smiljanić, I.,& Vukašinović, N.. (2020). International Large Detector: Interim Design Report. in arXiv.org, 1-162.
https://doi.org/10.48550/arXiv.2003.01116
Abramowicz H, Agatonović-Jovin T, Alonso O, Amjad MS, An F, Božović-Jelisavčić I, Kačarević G, Smiljanić I, Vukašinović N. International Large Detector: Interim Design Report. in arXiv.org. 2020;:1-162.
doi:10.48550/arXiv.2003.01116 .
Abramowicz, Halina, Agatonović-Jovin, Tatjana, Alonso, Oscar, Amjad, Mohammad Sohail, An, Fenfen, Božović-Jelisavčić, Ivanka, Kačarević, Goran, Smiljanić, Ivan, Vukašinović, Nataša, "International Large Detector: Interim Design Report" in arXiv.org (2020):1-162,
https://doi.org/10.48550/arXiv.2003.01116 . .
1

A compact fine-grained calorimeter for luminosity measurement at a linear collider

Božović-Jelisavčić, Ivanka

(2020)

TY  - CONF
AU  - Božović-Jelisavčić, Ivanka
PY  - 2020
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9044
UR  - https://arxiv.org/abs/2002.03675
AB  - Based on a paper published in 2019 by the FCAL Collaboration, this talk is giving an update of the Collaboration's effort to design prototype of highly compact calorimeter to instrument the very forward region of a detector at future e+e- colliders. A luminometer prototype, based on sub-millimeter thick detector planes, is tested with an electron-beam of energy 1-5 GeV. The effective Molière radius of the prototype comprising eight detector planes was measured to be (8.1 ± 0.1 (stat) ± 0.3 (syst)) mm, and the result is well reproduced by the Monte Carlo simulation.
C3  - Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019
T1  - A compact fine-grained calorimeter for luminosity measurement at a linear collider
UR  - https://hdl.handle.net/21.15107/rcub_vinar_9044
ER  - 
@conference{
author = "Božović-Jelisavčić, Ivanka",
year = "2020",
abstract = "Based on a paper published in 2019 by the FCAL Collaboration, this talk is giving an update of the Collaboration's effort to design prototype of highly compact calorimeter to instrument the very forward region of a detector at future e+e- colliders. A luminometer prototype, based on sub-millimeter thick detector planes, is tested with an electron-beam of energy 1-5 GeV. The effective Molière radius of the prototype comprising eight detector planes was measured to be (8.1 ± 0.1 (stat) ± 0.3 (syst)) mm, and the result is well reproduced by the Monte Carlo simulation.",
journal = "Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019",
title = "A compact fine-grained calorimeter for luminosity measurement at a linear collider",
url = "https://hdl.handle.net/21.15107/rcub_vinar_9044"
}
Božović-Jelisavčić, I.. (2020). A compact fine-grained calorimeter for luminosity measurement at a linear collider. in Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019.
https://hdl.handle.net/21.15107/rcub_vinar_9044
Božović-Jelisavčić I. A compact fine-grained calorimeter for luminosity measurement at a linear collider. in Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019. 2020;.
https://hdl.handle.net/21.15107/rcub_vinar_9044 .
Božović-Jelisavčić, Ivanka, "A compact fine-grained calorimeter for luminosity measurement at a linear collider" in Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019 (2020),
https://hdl.handle.net/21.15107/rcub_vinar_9044 .

Beam-spread determination for luminosity measurement at CEPC

Smiljanić, Ivan; Božović-Jelisavčić, Ivanka; Kačarević, Goran

(2020)

TY  - CONF
AU  - Smiljanić, Ivan
AU  - Božović-Jelisavčić, Ivanka
AU  - Kačarević, Goran
PY  - 2020
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9045
UR  - https://arxiv.org/abs/2002.03661
AB  - Any asymmetry in energy of the colliding beams will lead to a longitudinal boost of the center-of-mass frame of colliding particles w.r.t. the laboratory frame and consequently to the counting loss in luminometer due to the loss of colinearity of Bhabha final states. At CEPC running at the Z0 pole, asymmetry in energy of the colliding beams should be known as well as 12.5% of the beam-spread, in order to control the uncertainty of Bhabha count at the level of 10-4. Here we discuss the method, initially proposed for FCCee, to determine variation of the beam-spread from the measurement of the effective center-of-mass energy in e+e-→μ+μ- collisions.
C3  - Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019
C3  - Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019
T1  - Beam-spread determination for luminosity measurement at CEPC
UR  - https://hdl.handle.net/21.15107/rcub_vinar_9045
ER  - 
@conference{
author = "Smiljanić, Ivan and Božović-Jelisavčić, Ivanka and Kačarević, Goran",
year = "2020",
abstract = "Any asymmetry in energy of the colliding beams will lead to a longitudinal boost of the center-of-mass frame of colliding particles w.r.t. the laboratory frame and consequently to the counting loss in luminometer due to the loss of colinearity of Bhabha final states. At CEPC running at the Z0 pole, asymmetry in energy of the colliding beams should be known as well as 12.5% of the beam-spread, in order to control the uncertainty of Bhabha count at the level of 10-4. Here we discuss the method, initially proposed for FCCee, to determine variation of the beam-spread from the measurement of the effective center-of-mass energy in e+e-→μ+μ- collisions.",
journal = "Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019, Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019",
title = "Beam-spread determination for luminosity measurement at CEPC",
url = "https://hdl.handle.net/21.15107/rcub_vinar_9045"
}
Smiljanić, I., Božović-Jelisavčić, I.,& Kačarević, G.. (2020). Beam-spread determination for luminosity measurement at CEPC. in Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019.
https://hdl.handle.net/21.15107/rcub_vinar_9045
Smiljanić I, Božović-Jelisavčić I, Kačarević G. Beam-spread determination for luminosity measurement at CEPC. in Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019. 2020;.
https://hdl.handle.net/21.15107/rcub_vinar_9045 .
Smiljanić, Ivan, Božović-Jelisavčić, Ivanka, Kačarević, Goran, "Beam-spread determination for luminosity measurement at CEPC" in Proceedings of the International Workshop on Future Linear Colliders, LCWS 2019 (2020),
https://hdl.handle.net/21.15107/rcub_vinar_9045 .

Physics at the Compact Linear Collider

Božović-Jelisavčić, Ivanka

(2019)

TY  - CONF
AU  - Božović-Jelisavčić, Ivanka
PY  - 2019
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/12731
AB  - This paper (based on an invited talk at the 18th Lomonosov Conference on Elementary Particle Physics) provides an overview of the physics program at CLIC, including updates on the ongoing studies on t-quark precision observables, massive vector-boson scattering and di-photon processes at high energies.
C3  - 18th Lomonosov Conference on Elementary Particle Physics : PARTICLE PHYSICS at the Silver Jubilee of Lomonosov Conference : Proceedings
T1  - Physics at the Compact Linear Collider
SP  - 448
SP  - 452
DO  - 10.1142/9789811202339_0081
ER  - 
@conference{
author = "Božović-Jelisavčić, Ivanka",
year = "2019",
abstract = "This paper (based on an invited talk at the 18th Lomonosov Conference on Elementary Particle Physics) provides an overview of the physics program at CLIC, including updates on the ongoing studies on t-quark precision observables, massive vector-boson scattering and di-photon processes at high energies.",
journal = "18th Lomonosov Conference on Elementary Particle Physics : PARTICLE PHYSICS at the Silver Jubilee of Lomonosov Conference : Proceedings",
title = "Physics at the Compact Linear Collider",
pages = "448-452",
doi = "10.1142/9789811202339_0081"
}
Božović-Jelisavčić, I.. (2019). Physics at the Compact Linear Collider. in 18th Lomonosov Conference on Elementary Particle Physics : PARTICLE PHYSICS at the Silver Jubilee of Lomonosov Conference : Proceedings, 448.
https://doi.org/10.1142/9789811202339_0081
Božović-Jelisavčić I. Physics at the Compact Linear Collider. in 18th Lomonosov Conference on Elementary Particle Physics : PARTICLE PHYSICS at the Silver Jubilee of Lomonosov Conference : Proceedings. 2019;:448.
doi:10.1142/9789811202339_0081 .
Božović-Jelisavčić, Ivanka, "Physics at the Compact Linear Collider" in 18th Lomonosov Conference on Elementary Particle Physics : PARTICLE PHYSICS at the Silver Jubilee of Lomonosov Conference : Proceedings (2019):448,
https://doi.org/10.1142/9789811202339_0081 . .

Top-quark physics at the CLIC electron-positron linear collider

Abramowicz, H; Alipour Tehrani, N; Arominski, D; Benhammou, Y; Benoit, M; Blaising, J.-J.; Boronat, M; Borysov, O; Bosley, R R; Božović-Jelisavčić, Ivanka; Boyko, I; Brass, S; Brondolin, E; Bruckman de Renstrom, P.; Buckland, M; Burrows, P N; Chefdeville, M; Chekanov, S; Coates, T; Dannheim, D; Demarteau, M; Denizli, H; Durieux, G; Eigen, G; Elsener, K; Fullana, E; Fuster, J; Gabriel, M; Gaede, F; García, I; Goldstein, J; Gomis Lopez, P; Graf, C; Green, S; Grefe, C; Grojean, C; Hoang, A; Hynds, D; Joffe, A; Kalinowski, J; Kačarević, Goran; Kilian, W; van der Kolk, N; Krawczyk, M; Kucharczyk, M; Leogrande, E; Lesiak, T; Levy, A.; Levy, I; Linssen, L; Maier, A A; Makarenko, V; Marshall, J S; Martin, V; Mateu, V; Matsedonskyi, O; Metcalfe, J; Milutinović-Dumbelović, Gordana; Münker, R M; Nefedov, Yu.; Nowak, K; Nürnberg, A; Pandurović, Mila; Perelló, M; Perez Codina, E; Petric, M; Pitters, F; Price, T; Quast, T; Redford, S; Repond, J; Robson, A; Roloff, P; Ros, E; Rozwadowska, K; Ruiz-Jimeno, A; Sailer, A; Salvatore, F; Schnoor, U; Schulte, D; Senol, A; Shelkov, G; Sicking, E; Simon, F; Simoniello, R; Sopicki, P; Spannagel, S; Stapnes, S; Ström, R; Szalay, M; Thomson, M A; Turbiarz, B; Viazlo, O; Vicente, M; Vila, I; Vos, M; Vossebeld, J; Watson, M. F.; Watson, N K; Weber, M A; Weerts, H; Wells, J D; Widl, A; Williams, M; Winter, A.G.; Wojtoń, T; Wulzer, A; Xu, B; Xia, L; You, T; Żarnecki, A F; Zawiejski, L; Zhang, C.; Zhang, J.; Zhang, Y.; Zhang, Z; Zhemchugov, A

(2019)

TY  - JOUR
AU  - Abramowicz, H
AU  - Alipour Tehrani, N
AU  - Arominski, D
AU  - Benhammou, Y
AU  - Benoit, M
AU  - Blaising, J.-J.
AU  - Boronat, M
AU  - Borysov, O
AU  - Bosley, R R
AU  - Božović-Jelisavčić, Ivanka
AU  - Boyko, I
AU  - Brass, S
AU  - Brondolin, E
AU  - Bruckman de Renstrom, P.
AU  - Buckland, M
AU  - Burrows, P N
AU  - Chefdeville, M
AU  - Chekanov, S
AU  - Coates, T
AU  - Dannheim, D
AU  - Demarteau, M
AU  - Denizli, H
AU  - Durieux, G
AU  - Eigen, G
AU  - Elsener, K
AU  - Fullana, E
AU  - Fuster, J
AU  - Gabriel, M
AU  - Gaede, F
AU  - García, I
AU  - Goldstein, J
AU  - Gomis Lopez, P
AU  - Graf, C
AU  - Green, S
AU  - Grefe, C
AU  - Grojean, C
AU  - Hoang, A
AU  - Hynds, D
AU  - Joffe, A
AU  - Kalinowski, J
AU  - Kačarević, Goran
AU  - Kilian, W
AU  - van der Kolk, N
AU  - Krawczyk, M
AU  - Kucharczyk, M
AU  - Leogrande, E
AU  - Lesiak, T
AU  - Levy, A.
AU  - Levy, I
AU  - Linssen, L
AU  - Maier, A A
AU  - Makarenko, V
AU  - Marshall, J S
AU  - Martin, V
AU  - Mateu, V
AU  - Matsedonskyi, O
AU  - Metcalfe, J
AU  - Milutinović-Dumbelović, Gordana
AU  - Münker, R M
AU  - Nefedov, Yu.
AU  - Nowak, K
AU  - Nürnberg, A
AU  - Pandurović, Mila
AU  - Perelló, M
AU  - Perez Codina, E
AU  - Petric, M
AU  - Pitters, F
AU  - Price, T
AU  - Quast, T
AU  - Redford, S
AU  - Repond, J
AU  - Robson, A
AU  - Roloff, P
AU  - Ros, E
AU  - Rozwadowska, K
AU  - Ruiz-Jimeno, A
AU  - Sailer, A
AU  - Salvatore, F
AU  - Schnoor, U
AU  - Schulte, D
AU  - Senol, A
AU  - Shelkov, G
AU  - Sicking, E
AU  - Simon, F
AU  - Simoniello, R
AU  - Sopicki, P
AU  - Spannagel, S
AU  - Stapnes, S
AU  - Ström, R
AU  - Szalay, M
AU  - Thomson, M A
AU  - Turbiarz, B
AU  - Viazlo, O
AU  - Vicente, M
AU  - Vila, I
AU  - Vos, M
AU  - Vossebeld, J
AU  - Watson, M. F.
AU  - Watson, N K
AU  - Weber, M A
AU  - Weerts, H
AU  - Wells, J D
AU  - Widl, A
AU  - Williams, M
AU  - Winter, A.G.
AU  - Wojtoń, T
AU  - Wulzer, A
AU  - Xu, B
AU  - Xia, L
AU  - You, T
AU  - Żarnecki, A F
AU  - Zawiejski, L
AU  - Zhang, C.
AU  - Zhang, J.
AU  - Zhang, Y.
AU  - Zhang, Z
AU  - Zhemchugov, A
PY  - 2019
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/8656
AB  - The Compact Linear Collider (CLIC) is a proposed future high-luminosity linear electron-positron collider operating at three energy stages, with nominal centre-of-mass energies s = 380 GeV, 1.5 TeV, and 3 TeV. Its aim is to explore the energy frontier, providing sensitivity to physics beyond the Standard Model (BSM) and precision measurements of Standard Model processes with an emphasis on Higgs boson and top-quark physics. The opportunities for top-quark physics at CLIC are discussed in this paper. The initial stage of operation focuses on top-quark pair production measurements, as well as the search for rare flavour-changing neutral current (FCNC) top-quark decays. It also includes a top-quark pair production threshold scan around 350 GeV which provides a precise measurement of the top-quark mass in a well-defined theoretical framework. At the higher-energy stages, studies are made of top-quark pairs produced in association with other particles. A study of t̄tH production including the extraction of the top Yukawa coupling is presented as well as a study of vector boson fusion (VBF) production, which gives direct access to high-energy electroweak interactions. Operation above 1 TeV leads to more highly collimated jet environments where dedicated methods are used to analyse the jet constituents. These techniques enable studies of the top-quark pair production, and hence the sensitivity to BSM physics, to be extended to higher energies. This paper also includes phenomenological interpretations that may be performed using the results from the extensive top-quark physics programme at CLIC. [Figure not available: see fulltext.] © 2019, The Author(s).
T2  - Journal of High Energy Physics
T1  - Top-quark physics at the CLIC electron-positron linear collider
VL  - 2019
IS  - 11
SP  - 3
DO  - 10.1007/JHEP11(2019)003
ER  - 
@article{
author = "Abramowicz, H and Alipour Tehrani, N and Arominski, D and Benhammou, Y and Benoit, M and Blaising, J.-J. and Boronat, M and Borysov, O and Bosley, R R and Božović-Jelisavčić, Ivanka and Boyko, I and Brass, S and Brondolin, E and Bruckman de Renstrom, P. and Buckland, M and Burrows, P N and Chefdeville, M and Chekanov, S and Coates, T and Dannheim, D and Demarteau, M and Denizli, H and Durieux, G and Eigen, G and Elsener, K and Fullana, E and Fuster, J and Gabriel, M and Gaede, F and García, I and Goldstein, J and Gomis Lopez, P and Graf, C and Green, S and Grefe, C and Grojean, C and Hoang, A and Hynds, D and Joffe, A and Kalinowski, J and Kačarević, Goran and Kilian, W and van der Kolk, N and Krawczyk, M and Kucharczyk, M and Leogrande, E and Lesiak, T and Levy, A. and Levy, I and Linssen, L and Maier, A A and Makarenko, V and Marshall, J S and Martin, V and Mateu, V and Matsedonskyi, O and Metcalfe, J and Milutinović-Dumbelović, Gordana and Münker, R M and Nefedov, Yu. and Nowak, K and Nürnberg, A and Pandurović, Mila and Perelló, M and Perez Codina, E and Petric, M and Pitters, F and Price, T and Quast, T and Redford, S and Repond, J and Robson, A and Roloff, P and Ros, E and Rozwadowska, K and Ruiz-Jimeno, A and Sailer, A and Salvatore, F and Schnoor, U and Schulte, D and Senol, A and Shelkov, G and Sicking, E and Simon, F and Simoniello, R and Sopicki, P and Spannagel, S and Stapnes, S and Ström, R and Szalay, M and Thomson, M A and Turbiarz, B and Viazlo, O and Vicente, M and Vila, I and Vos, M and Vossebeld, J and Watson, M. F. and Watson, N K and Weber, M A and Weerts, H and Wells, J D and Widl, A and Williams, M and Winter, A.G. and Wojtoń, T and Wulzer, A and Xu, B and Xia, L and You, T and Żarnecki, A F and Zawiejski, L and Zhang, C. and Zhang, J. and Zhang, Y. and Zhang, Z and Zhemchugov, A",
year = "2019",
abstract = "The Compact Linear Collider (CLIC) is a proposed future high-luminosity linear electron-positron collider operating at three energy stages, with nominal centre-of-mass energies s = 380 GeV, 1.5 TeV, and 3 TeV. Its aim is to explore the energy frontier, providing sensitivity to physics beyond the Standard Model (BSM) and precision measurements of Standard Model processes with an emphasis on Higgs boson and top-quark physics. The opportunities for top-quark physics at CLIC are discussed in this paper. The initial stage of operation focuses on top-quark pair production measurements, as well as the search for rare flavour-changing neutral current (FCNC) top-quark decays. It also includes a top-quark pair production threshold scan around 350 GeV which provides a precise measurement of the top-quark mass in a well-defined theoretical framework. At the higher-energy stages, studies are made of top-quark pairs produced in association with other particles. A study of t̄tH production including the extraction of the top Yukawa coupling is presented as well as a study of vector boson fusion (VBF) production, which gives direct access to high-energy electroweak interactions. Operation above 1 TeV leads to more highly collimated jet environments where dedicated methods are used to analyse the jet constituents. These techniques enable studies of the top-quark pair production, and hence the sensitivity to BSM physics, to be extended to higher energies. This paper also includes phenomenological interpretations that may be performed using the results from the extensive top-quark physics programme at CLIC. [Figure not available: see fulltext.] © 2019, The Author(s).",
journal = "Journal of High Energy Physics",
title = "Top-quark physics at the CLIC electron-positron linear collider",
volume = "2019",
number = "11",
pages = "3",
doi = "10.1007/JHEP11(2019)003"
}
Abramowicz, H., Alipour Tehrani, N., Arominski, D., Benhammou, Y., Benoit, M., Blaising, J.-J., Boronat, M., Borysov, O., Bosley, R. R., Božović-Jelisavčić, I., Boyko, I., Brass, S., Brondolin, E., Bruckman de Renstrom, P., Buckland, M., Burrows, P. N., Chefdeville, M., Chekanov, S., Coates, T., Dannheim, D., Demarteau, M., Denizli, H., Durieux, G., Eigen, G., Elsener, K., Fullana, E., Fuster, J., Gabriel, M., Gaede, F., García, I., Goldstein, J., Gomis Lopez, P., Graf, C., Green, S., Grefe, C., Grojean, C., Hoang, A., Hynds, D., Joffe, A., Kalinowski, J., Kačarević, G., Kilian, W., van der Kolk, N., Krawczyk, M., Kucharczyk, M., Leogrande, E., Lesiak, T., Levy, A., Levy, I., Linssen, L., Maier, A. A., Makarenko, V., Marshall, J. S., Martin, V., Mateu, V., Matsedonskyi, O., Metcalfe, J., Milutinović-Dumbelović, G., Münker, R. M., Nefedov, Yu., Nowak, K., Nürnberg, A., Pandurović, M., Perelló, M., Perez Codina, E., Petric, M., Pitters, F., Price, T., Quast, T., Redford, S., Repond, J., Robson, A., Roloff, P., Ros, E., Rozwadowska, K., Ruiz-Jimeno, A., Sailer, A., Salvatore, F., Schnoor, U., Schulte, D., Senol, A., Shelkov, G., Sicking, E., Simon, F., Simoniello, R., Sopicki, P., Spannagel, S., Stapnes, S., Ström, R., Szalay, M., Thomson, M. A., Turbiarz, B., Viazlo, O., Vicente, M., Vila, I., Vos, M., Vossebeld, J., Watson, M. F., Watson, N. K., Weber, M. A., Weerts, H., Wells, J. D., Widl, A., Williams, M., Winter, A.G., Wojtoń, T., Wulzer, A., Xu, B., Xia, L., You, T., Żarnecki, A. F., Zawiejski, L., Zhang, C., Zhang, J., Zhang, Y., Zhang, Z.,& Zhemchugov, A.. (2019). Top-quark physics at the CLIC electron-positron linear collider. in Journal of High Energy Physics, 2019(11), 3.
https://doi.org/10.1007/JHEP11(2019)003
Abramowicz H, Alipour Tehrani N, Arominski D, Benhammou Y, Benoit M, Blaising J, Boronat M, Borysov O, Bosley RR, Božović-Jelisavčić I, Boyko I, Brass S, Brondolin E, Bruckman de Renstrom P, Buckland M, Burrows PN, Chefdeville M, Chekanov S, Coates T, Dannheim D, Demarteau M, Denizli H, Durieux G, Eigen G, Elsener K, Fullana E, Fuster J, Gabriel M, Gaede F, García I, Goldstein J, Gomis Lopez P, Graf C, Green S, Grefe C, Grojean C, Hoang A, Hynds D, Joffe A, Kalinowski J, Kačarević G, Kilian W, van der Kolk N, Krawczyk M, Kucharczyk M, Leogrande E, Lesiak T, Levy A, Levy I, Linssen L, Maier AA, Makarenko V, Marshall JS, Martin V, Mateu V, Matsedonskyi O, Metcalfe J, Milutinović-Dumbelović G, Münker RM, Nefedov Y, Nowak K, Nürnberg A, Pandurović M, Perelló M, Perez Codina E, Petric M, Pitters F, Price T, Quast T, Redford S, Repond J, Robson A, Roloff P, Ros E, Rozwadowska K, Ruiz-Jimeno A, Sailer A, Salvatore F, Schnoor U, Schulte D, Senol A, Shelkov G, Sicking E, Simon F, Simoniello R, Sopicki P, Spannagel S, Stapnes S, Ström R, Szalay M, Thomson MA, Turbiarz B, Viazlo O, Vicente M, Vila I, Vos M, Vossebeld J, Watson MF, Watson NK, Weber MA, Weerts H, Wells JD, Widl A, Williams M, Winter A, Wojtoń T, Wulzer A, Xu B, Xia L, You T, Żarnecki AF, Zawiejski L, Zhang C, Zhang J, Zhang Y, Zhang Z, Zhemchugov A. Top-quark physics at the CLIC electron-positron linear collider. in Journal of High Energy Physics. 2019;2019(11):3.
doi:10.1007/JHEP11(2019)003 .
Abramowicz, H, Alipour Tehrani, N, Arominski, D, Benhammou, Y, Benoit, M, Blaising, J.-J., Boronat, M, Borysov, O, Bosley, R R, Božović-Jelisavčić, Ivanka, Boyko, I, Brass, S, Brondolin, E, Bruckman de Renstrom, P., Buckland, M, Burrows, P N, Chefdeville, M, Chekanov, S, Coates, T, Dannheim, D, Demarteau, M, Denizli, H, Durieux, G, Eigen, G, Elsener, K, Fullana, E, Fuster, J, Gabriel, M, Gaede, F, García, I, Goldstein, J, Gomis Lopez, P, Graf, C, Green, S, Grefe, C, Grojean, C, Hoang, A, Hynds, D, Joffe, A, Kalinowski, J, Kačarević, Goran, Kilian, W, van der Kolk, N, Krawczyk, M, Kucharczyk, M, Leogrande, E, Lesiak, T, Levy, A., Levy, I, Linssen, L, Maier, A A, Makarenko, V, Marshall, J S, Martin, V, Mateu, V, Matsedonskyi, O, Metcalfe, J, Milutinović-Dumbelović, Gordana, Münker, R M, Nefedov, Yu., Nowak, K, Nürnberg, A, Pandurović, Mila, Perelló, M, Perez Codina, E, Petric, M, Pitters, F, Price, T, Quast, T, Redford, S, Repond, J, Robson, A, Roloff, P, Ros, E, Rozwadowska, K, Ruiz-Jimeno, A, Sailer, A, Salvatore, F, Schnoor, U, Schulte, D, Senol, A, Shelkov, G, Sicking, E, Simon, F, Simoniello, R, Sopicki, P, Spannagel, S, Stapnes, S, Ström, R, Szalay, M, Thomson, M A, Turbiarz, B, Viazlo, O, Vicente, M, Vila, I, Vos, M, Vossebeld, J, Watson, M. F., Watson, N K, Weber, M A, Weerts, H, Wells, J D, Widl, A, Williams, M, Winter, A.G., Wojtoń, T, Wulzer, A, Xu, B, Xia, L, You, T, Żarnecki, A F, Zawiejski, L, Zhang, C., Zhang, J., Zhang, Y., Zhang, Z, Zhemchugov, A, "Top-quark physics at the CLIC electron-positron linear collider" in Journal of High Energy Physics, 2019, no. 11 (2019):3,
https://doi.org/10.1007/JHEP11(2019)003 . .
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FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1

Abada, A; Abbrescia, M; AbdusSalam, S S; Abdyukhanov, I; Adžić, Petar; Božović-Jelisavčić, Ivanka; Živković, Lada

(2019)

TY  - JOUR
AU  - Abada, A
AU  - Abbrescia, M
AU  - AbdusSalam, S S
AU  - Abdyukhanov, I
AU  - Adžić, Petar
AU  - Božović-Jelisavčić, Ivanka
AU  - Živković, Lada
PY  - 2019
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/8365
AB  - We review the physics opportunities of the Future Circular Collider, covering its e+e-, pp, ep and heavy ion programmes. We describe the measurement capabilities of each FCC component, addressing the study of electroweak, Higgs and strong interactions, the top quark and flavour, as well as phenomena beyond the Standard Model. We highlight the synergy and complementarity of the different colliders, which will contribute to a uniquely coherent and ambitious research programme, providing an unmatchable combination of precision and sensitivity to new physics. © 2019, The Author(s).
T2  - European Physical Journal C. Particles and Fields
T1  - FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1
VL  - 79
IS  - 6
DO  - 10.1140/epjc/s10052-019-6904-3
ER  - 
@article{
author = "Abada, A and Abbrescia, M and AbdusSalam, S S and Abdyukhanov, I and Adžić, Petar and Božović-Jelisavčić, Ivanka and Živković, Lada",
year = "2019",
abstract = "We review the physics opportunities of the Future Circular Collider, covering its e+e-, pp, ep and heavy ion programmes. We describe the measurement capabilities of each FCC component, addressing the study of electroweak, Higgs and strong interactions, the top quark and flavour, as well as phenomena beyond the Standard Model. We highlight the synergy and complementarity of the different colliders, which will contribute to a uniquely coherent and ambitious research programme, providing an unmatchable combination of precision and sensitivity to new physics. © 2019, The Author(s).",
journal = "European Physical Journal C. Particles and Fields",
title = "FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1",
volume = "79",
number = "6",
doi = "10.1140/epjc/s10052-019-6904-3"
}
Abada, A., Abbrescia, M., AbdusSalam, S. S., Abdyukhanov, I., Adžić, P., Božović-Jelisavčić, I.,& Živković, L.. (2019). FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1. in European Physical Journal C. Particles and Fields, 79(6).
https://doi.org/10.1140/epjc/s10052-019-6904-3
Abada A, Abbrescia M, AbdusSalam SS, Abdyukhanov I, Adžić P, Božović-Jelisavčić I, Živković L. FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1. in European Physical Journal C. Particles and Fields. 2019;79(6).
doi:10.1140/epjc/s10052-019-6904-3 .
Abada, A, Abbrescia, M, AbdusSalam, S S, Abdyukhanov, I, Adžić, Petar, Božović-Jelisavčić, Ivanka, Živković, Lada, "FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1" in European Physical Journal C. Particles and Fields, 79, no. 6 (2019),
https://doi.org/10.1140/epjc/s10052-019-6904-3 . .
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471

Performance and Molière radius measurements using a compact prototype of LumiCal in an electron test beam

Abramowicz, H; Abusleme, A; Afanaciev, K; Benhammou, Y; Borysov, O; Borysova, M; Božović-Jelisavčić, Ivanka; Daniluk, W; Dannheim, D; Demichev, M; Elsener, K; Firlej, M; Firu, E; Fiutowski, Tomasz; Ghenescu, V; Gostkin, M; Hempel, M; Henschel, H; Idzik, M; Ignatenko, A; Ishikawa, Akimasa; Joffe, A; Kačarević, Goran; Kananov, S; Karacheban, O; Klempt, W; Kotov, S; Kotula, J; Kruchonak, U; Kulis, Sz.; Lange, W; Leonard, J; Lesiak, T; Levy, A.; Levy, I; Linssen, L; Lohmann, W; Moron, J; Moszczynski, A; Neagu, A T; Pawlik, B; Preda, T; Sailer, A; Schumm, B; Schuwalow, S; Sicking, E; Swientek, K; Turbiarz, B; Vukašinović, Nataša; Wojton, T; Yamamoto, H; Zawiejski, L; Zgura, I S; Zhemchugov, A

(2019)

TY  - JOUR
AU  - Abramowicz, H
AU  - Abusleme, A
AU  - Afanaciev, K
AU  - Benhammou, Y
AU  - Borysov, O
AU  - Borysova, M
AU  - Božović-Jelisavčić, Ivanka
AU  - Daniluk, W
AU  - Dannheim, D
AU  - Demichev, M
AU  - Elsener, K
AU  - Firlej, M
AU  - Firu, E
AU  - Fiutowski, Tomasz
AU  - Ghenescu, V
AU  - Gostkin, M
AU  - Hempel, M
AU  - Henschel, H
AU  - Idzik, M
AU  - Ignatenko, A
AU  - Ishikawa, Akimasa
AU  - Joffe, A
AU  - Kačarević, Goran
AU  - Kananov, S
AU  - Karacheban, O
AU  - Klempt, W
AU  - Kotov, S
AU  - Kotula, J
AU  - Kruchonak, U
AU  - Kulis, Sz.
AU  - Lange, W
AU  - Leonard, J
AU  - Lesiak, T
AU  - Levy, A.
AU  - Levy, I
AU  - Linssen, L
AU  - Lohmann, W
AU  - Moron, J
AU  - Moszczynski, A
AU  - Neagu, A T
AU  - Pawlik, B
AU  - Preda, T
AU  - Sailer, A
AU  - Schumm, B
AU  - Schuwalow, S
AU  - Sicking, E
AU  - Swientek, K
AU  - Turbiarz, B
AU  - Vukašinović, Nataša
AU  - Wojton, T
AU  - Yamamoto, H
AU  - Zawiejski, L
AU  - Zgura, I S
AU  - Zhemchugov, A
PY  - 2019
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/8388
AB  - A new design of a detector plane of sub-millimetre thickness for an electromagnetic sampling calorimeter is presented. It is intended to be used in the luminometers LumiCal and BeamCal in future linear e+e- collider experiments. The detector planes were produced utilising novel connectivity scheme technologies. They were installed in a compact prototype of the calorimeter and tested at DESY with an electron beam of energy 1–5 GeV. The performance of a prototype of a compact LumiCal comprising eight detector planes was studied. The effective Molière radius at 5 GeV was determined to be (8.1 ± 0.1 (stat) ± 0.3 (syst)) mm, a value well reproduced by the Monte Carlo (MC) simulation (8.4 ± 0.1) mm. The dependence of the effective Molière radius on the electron energy in the range 1–5 GeV was also studied. Good agreement was obtained between data and MC simulation. © 2019, The Author(s).
T2  - European Physical Journal C. Particles and Fields
T1  - Performance and Molière radius measurements using a compact prototype of LumiCal in an electron test beam
VL  - 79
IS  - 7
SP  - 579
DO  - 10.1140/epjc/s10052-019-7077-9
ER  - 
@article{
author = "Abramowicz, H and Abusleme, A and Afanaciev, K and Benhammou, Y and Borysov, O and Borysova, M and Božović-Jelisavčić, Ivanka and Daniluk, W and Dannheim, D and Demichev, M and Elsener, K and Firlej, M and Firu, E and Fiutowski, Tomasz and Ghenescu, V and Gostkin, M and Hempel, M and Henschel, H and Idzik, M and Ignatenko, A and Ishikawa, Akimasa and Joffe, A and Kačarević, Goran and Kananov, S and Karacheban, O and Klempt, W and Kotov, S and Kotula, J and Kruchonak, U and Kulis, Sz. and Lange, W and Leonard, J and Lesiak, T and Levy, A. and Levy, I and Linssen, L and Lohmann, W and Moron, J and Moszczynski, A and Neagu, A T and Pawlik, B and Preda, T and Sailer, A and Schumm, B and Schuwalow, S and Sicking, E and Swientek, K and Turbiarz, B and Vukašinović, Nataša and Wojton, T and Yamamoto, H and Zawiejski, L and Zgura, I S and Zhemchugov, A",
year = "2019",
abstract = "A new design of a detector plane of sub-millimetre thickness for an electromagnetic sampling calorimeter is presented. It is intended to be used in the luminometers LumiCal and BeamCal in future linear e+e- collider experiments. The detector planes were produced utilising novel connectivity scheme technologies. They were installed in a compact prototype of the calorimeter and tested at DESY with an electron beam of energy 1–5 GeV. The performance of a prototype of a compact LumiCal comprising eight detector planes was studied. The effective Molière radius at 5 GeV was determined to be (8.1 ± 0.1 (stat) ± 0.3 (syst)) mm, a value well reproduced by the Monte Carlo (MC) simulation (8.4 ± 0.1) mm. The dependence of the effective Molière radius on the electron energy in the range 1–5 GeV was also studied. Good agreement was obtained between data and MC simulation. © 2019, The Author(s).",
journal = "European Physical Journal C. Particles and Fields",
title = "Performance and Molière radius measurements using a compact prototype of LumiCal in an electron test beam",
volume = "79",
number = "7",
pages = "579",
doi = "10.1140/epjc/s10052-019-7077-9"
}
Abramowicz, H., Abusleme, A., Afanaciev, K., Benhammou, Y., Borysov, O., Borysova, M., Božović-Jelisavčić, I., Daniluk, W., Dannheim, D., Demichev, M., Elsener, K., Firlej, M., Firu, E., Fiutowski, T., Ghenescu, V., Gostkin, M., Hempel, M., Henschel, H., Idzik, M., Ignatenko, A., Ishikawa, A., Joffe, A., Kačarević, G., Kananov, S., Karacheban, O., Klempt, W., Kotov, S., Kotula, J., Kruchonak, U., Kulis, Sz., Lange, W., Leonard, J., Lesiak, T., Levy, A., Levy, I., Linssen, L., Lohmann, W., Moron, J., Moszczynski, A., Neagu, A. T., Pawlik, B., Preda, T., Sailer, A., Schumm, B., Schuwalow, S., Sicking, E., Swientek, K., Turbiarz, B., Vukašinović, N., Wojton, T., Yamamoto, H., Zawiejski, L., Zgura, I. S.,& Zhemchugov, A.. (2019). Performance and Molière radius measurements using a compact prototype of LumiCal in an electron test beam. in European Physical Journal C. Particles and Fields, 79(7), 579.
https://doi.org/10.1140/epjc/s10052-019-7077-9
Abramowicz H, Abusleme A, Afanaciev K, Benhammou Y, Borysov O, Borysova M, Božović-Jelisavčić I, Daniluk W, Dannheim D, Demichev M, Elsener K, Firlej M, Firu E, Fiutowski T, Ghenescu V, Gostkin M, Hempel M, Henschel H, Idzik M, Ignatenko A, Ishikawa A, Joffe A, Kačarević G, Kananov S, Karacheban O, Klempt W, Kotov S, Kotula J, Kruchonak U, Kulis S, Lange W, Leonard J, Lesiak T, Levy A, Levy I, Linssen L, Lohmann W, Moron J, Moszczynski A, Neagu AT, Pawlik B, Preda T, Sailer A, Schumm B, Schuwalow S, Sicking E, Swientek K, Turbiarz B, Vukašinović N, Wojton T, Yamamoto H, Zawiejski L, Zgura IS, Zhemchugov A. Performance and Molière radius measurements using a compact prototype of LumiCal in an electron test beam. in European Physical Journal C. Particles and Fields. 2019;79(7):579.
doi:10.1140/epjc/s10052-019-7077-9 .
Abramowicz, H, Abusleme, A, Afanaciev, K, Benhammou, Y, Borysov, O, Borysova, M, Božović-Jelisavčić, Ivanka, Daniluk, W, Dannheim, D, Demichev, M, Elsener, K, Firlej, M, Firu, E, Fiutowski, Tomasz, Ghenescu, V, Gostkin, M, Hempel, M, Henschel, H, Idzik, M, Ignatenko, A, Ishikawa, Akimasa, Joffe, A, Kačarević, Goran, Kananov, S, Karacheban, O, Klempt, W, Kotov, S, Kotula, J, Kruchonak, U, Kulis, Sz., Lange, W, Leonard, J, Lesiak, T, Levy, A., Levy, I, Linssen, L, Lohmann, W, Moron, J, Moszczynski, A, Neagu, A T, Pawlik, B, Preda, T, Sailer, A, Schumm, B, Schuwalow, S, Sicking, E, Swientek, K, Turbiarz, B, Vukašinović, Nataša, Wojton, T, Yamamoto, H, Zawiejski, L, Zgura, I S, Zhemchugov, A, "Performance and Molière radius measurements using a compact prototype of LumiCal in an electron test beam" in European Physical Journal C. Particles and Fields, 79, no. 7 (2019):579,
https://doi.org/10.1140/epjc/s10052-019-7077-9 . .
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