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dc.creatorAn, Fenfen
dc.creatorBai, Yu
dc.creatorChen, Chunhui
dc.creatorChen, Xin
dc.creatorChen, Zhenxing
dc.creatorda Costa, Joao Guimaraes
dc.creatorCui, Zhenwei
dc.creatorFang, Yaquan
dc.creatorFu, Chengdong
dc.creatorGao, Jun
dc.creatorGao, Yanyan
dc.creatorGao, Yuanning
dc.creatorGe, Shaofeng
dc.creatorGu, Jiayin
dc.creatorGuo, Fangyi
dc.creatorGuo, Jun
dc.creatorHan, Tao
dc.creatorHan, Shuang
dc.creatorHe, Hongjian
dc.creatorHe, Xianke
dc.creatorHe, Xiaogang
dc.creatorHu, Jifeng
dc.creatorHsu, Shih-Chieh
dc.creatorJin, Shan
dc.creatorJing, Maoqiang
dc.creatorJyotishmati, Susmita
dc.creatorRyuta, Kiuchi
dc.creatorKuo, Chia-Ming
dc.creatorLai, Peizhu
dc.creatorLi, Boyang
dc.creatorLi, Congqiao
dc.creatorLi, Gang
dc.creatorLi, Haifeng
dc.creatorLi, Liang
dc.creatorLi, Shu
dc.creatorLi, Tong
dc.creatorLi, Qiang
dc.creatorLiang, Hao
dc.creatorLiang, Zhijun
dc.creatorLiao, Libo
dc.creatorLiu, Bo
dc.creatorLiu, Jianbei
dc.creatorLiu, Tao
dc.creatorLiu, Zhen
dc.creatorLou, Xinchou
dc.creatorMa, Lianliang
dc.creatorMellado, Bruce
dc.creatorMo, Xin
dc.creatorPandurović, Mila
dc.creatorQian, Jianming
dc.creatorQian, Zhuoni
dc.creatorRompotis, Nikolaos
dc.creatorRuan, Manqi
dc.creatorSchuy, Alex
dc.creatorShan, Lianyou
dc.creatorShi, Jingyuan
dc.creatorShi, Xin
dc.creatorSu, Shufang
dc.creatorWang, Dayong
dc.creatorWang, Jin
dc.creatorWang, Liantao
dc.creatorWang, Yifang
dc.creatorWei, Yuqian
dc.creatorXu, Yue
dc.creatorYang, Haijun
dc.creatorYang, Ying
dc.creatorYao, Weiming
dc.creatorYu, Dan
dc.creatorZhang, Kaili
dc.creatorZhang, Zhaoru
dc.creatorZhao, Mingrui
dc.creatorZhao, Xianghu
dc.creatorZhou, Ning
dc.date.accessioned2019-07-17T09:46:36Z
dc.date.available2019-07-17T09:46:36Z
dc.date.issued2019
dc.identifier.issn1674-1137
dc.identifier.issn2058-6132
dc.identifier.urihttps://vinar.vin.bg.ac.rs/handle/123456789/8180
dc.description.abstractThe discovery of the Higgs boson with its mass around 125 GeV by the ATLAS and CMS Collaborations marked the beginning of a new era in high energy physics. The Higgs boson will be the subject of extensive studies of the ongoing LHC program. At the same time, lepton collider based Higgs factories have been proposed as a possible next step beyond the LHC, with its main goal to precisely measure the properties of the Higgs boson and probe potential new physics associated with the Higgs boson. The Circular Electron Positron Collider (CEPC) is one of such proposed Higgs factories. The CEPC is an e + e - circular collider proposed by and to be hosted in China. Located in a tunnel of approximately 100 km in circumference, it will operate at a center-of-mass energy of 240 GeV as the Higgs factory. In this paper, we present the first estimates on the precision of the Higgs boson property measurements achievable at the CEPC and discuss implications of these measurements. © 2019 Chinese Physical Society and the Institute of High Energy Physics of the Chinese Academy of Sciences and the Institute of Modern Physics of the Chinese Academy of Sciences and IOP Publishing Ltd.en
dc.language.isoen
dc.relationNational Key Program for S&T Researh and Development [2016YFA0400400]
dc.relationCAS Center for Excellence in Particle Physics
dc.relationYifang Wang's Science Studio of the Ten Thousand Talents Project
dc.relationCAS/SAFEA International Partnership Program for Creative Research Teams [H751S018S5]
dc.relationIHEP Innovation Grant [Y4545170Y2]
dc.relationKey Research Program of Frontier Sciences, CAS [XQYZDY-SSW-SLH002]
dc.relationChinese Academy of Science Special Grant for Large Scientific Project [113111KYSB20170005]
dc.relationNational Natural Science Foundation of China [11675202]
dc.relationHundred Talent Programs of Chinese Academy of Science [Y3515540U1]
dc.relationNational 1000 Talents Program of China
dc.relationNSF [PHY1620074]
dc.relationMaryland Center for Fundamental Physics (MCFP)
dc.relationTsinghua University Initiative Scientific Research Program
dc.relationBeijing Municipal Science and Technology Commission project [Z181100004218003]
dc.relationFermi Research Alliance, LLC [DE-AC02-07CH11359]
dc.rightsopenAccess
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.sourceChinese Physics C
dc.subjectCEPCen
dc.subjectHiggs bosonen
dc.subjectHiggs boson propertiesen
dc.subjectHiggs boson couplingsen
dc.subjectHiggs factoryen
dc.subjecteffective field theoryen
dc.subjectEFTen
dc.titlePrecision Higgs physics at the CEPCen
dc.typearticleen
dc.rights.licenseBY
dcterms.abstractда Цоста, Јоао Гуимараес; Цхен, Зхенxинг; Цхен, Xин; Хан, Схуанг; Баи, Yу; Aн, Фенфен; Цхен, Цхунхуи; Хан, Тао; Гуо, Јун; Гуо, Фангyи; Гу, Јиаyин; Ге, Схаофенг; Гао, Yуаннинг; Гао, Yанyан; Гао, Јун; Фу, Цхенгдонг; Фанг, Yаqуан; Цуи, Зхенwеи; Ху, Јифенг; Хсу, Схих-Цхиех; Јин, Схан; Јинг, Маоqианг; Јyотисхмати, Сусмита; Рyута, Киуцхи; Куо, Цхиа-Минг; Лаи, Пеизху; Ли, Боyанг; Ли, Цонгqиао; Ли, Ганг; Ли, Хаифенг; Ли, Лианг; Ли, Сху; Ли, Тонг; Ли, Qианг; Лианг, Хао; Лианг, Зхијун; Лиао, Либо; Лиу, Бо; Лиу, Јианбеи; Лиу, Тао; Лиу, Зхен; Лоу, Xинцхоу; Ма, Лианлианг; Мелладо, Бруце; Мо, Xин; Пандуровиц, Мила; Qиан, Јианминг; Qиан, Зхуони; Ромпотис, Николаос; Руан, Манqи; Сцхуy, Aлеx; Схан, Лианyоу; Схи, Јингyуан; Схи, Xин; Су, Схуфанг; Wанг, Даyонг; Wанг, Јин; Wанг, Лиантао; Wанг, Yифанг; Wеи, Yуqиан; Xу, Yуе; Yанг, Хаијун; Yанг, Yинг; Yао, Wеиминг; Yу, Дан; Зханг, Каили; Зханг, Зхаору; Зхао, Мингруи; Зхао, Xиангху; Зхоу, Нинг; Хе, Хонгјиан; Хе, Xианке; Хе, Xиаоганг;
dc.rights.holder© 2019 Chinese Physical Society and the Institute of High Energy Physics of the Chinese Academy of Sciences and the Institute of Modern Physics of the Chinese Academy of Sciences and IOP Publishing Ltd.
dc.citation.volume43
dc.citation.issue4
dc.citation.spage043002
dc.identifier.wos000463557500002
dc.identifier.doi10.1088/1674-1137/43/4/043002
dc.citation.rankM22
dc.type.versionpublishedVersion
dc.identifier.scopus2-s2.0-85065190159
dc.identifier.fulltexthttps://vinar.vin.bg.ac.rs//bitstream/id/20292/An_2019_Chinese_Phys._C_43_043002.pdf


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