Measurement of Higgs to WW in the all-jet final state at CEPC vs=250 GeV
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The most important pillar in the physics case of future electron-positron colliders in high energy physics is the measurement of the Higgs boson, with its main goal to precisely measure its properties and to probe potential of associated new physics. All next generation electron positron facilities in high energy physics will make use of the Higgsstrahlung Higgs production channel. The physics potential of CEPC for measurement of the cross-section times branching ratio of subdominant decay H ? WW* is presented. The Higgsstrahnlung Higgs production channel is used, at the center of mass energy of 250 GeV. The fully hadronic decay, containing six soft-jets in the final state is of great importance for the detector design, jet pairing and reconstruction as showing the capability of CEPC for W/Z separation. The analysis is performed in full simulation. © Copyright owned by the author(s) under the terms of the Creative Commons
Кључне речи:
Higgs particle: decay / W: pair production / W: hadronic decay / background / electron positron: colliding beamsq / CEPC / numerical calculations / new physics / Higgs particle --> W+ W-Извор:
Proceedings of Science, 2021, 390Колекције
Институција/група
VinčaTY - CONF AU - Pandurović, Mila PY - 2021 UR - https://vinar.vin.bg.ac.rs/handle/123456789/9805 AB - The most important pillar in the physics case of future electron-positron colliders in high energy physics is the measurement of the Higgs boson, with its main goal to precisely measure its properties and to probe potential of associated new physics. All next generation electron positron facilities in high energy physics will make use of the Higgsstrahlung Higgs production channel. The physics potential of CEPC for measurement of the cross-section times branching ratio of subdominant decay H ? WW* is presented. The Higgsstrahnlung Higgs production channel is used, at the center of mass energy of 250 GeV. The fully hadronic decay, containing six soft-jets in the final state is of great importance for the detector design, jet pairing and reconstruction as showing the capability of CEPC for W/Z separation. The analysis is performed in full simulation. © Copyright owned by the author(s) under the terms of the Creative Commons C3 - Proceedings of Science T1 - Measurement of Higgs to WW in the all-jet final state at CEPC vs=250 GeV VL - 390 DO - 10.22323/1.390.0074 ER -
@conference{ author = "Pandurović, Mila", year = "2021", abstract = "The most important pillar in the physics case of future electron-positron colliders in high energy physics is the measurement of the Higgs boson, with its main goal to precisely measure its properties and to probe potential of associated new physics. All next generation electron positron facilities in high energy physics will make use of the Higgsstrahlung Higgs production channel. The physics potential of CEPC for measurement of the cross-section times branching ratio of subdominant decay H ? WW* is presented. The Higgsstrahnlung Higgs production channel is used, at the center of mass energy of 250 GeV. The fully hadronic decay, containing six soft-jets in the final state is of great importance for the detector design, jet pairing and reconstruction as showing the capability of CEPC for W/Z separation. The analysis is performed in full simulation. © Copyright owned by the author(s) under the terms of the Creative Commons", journal = "Proceedings of Science", title = "Measurement of Higgs to WW in the all-jet final state at CEPC vs=250 GeV", volume = "390", doi = "10.22323/1.390.0074" }
Pandurović, M.. (2021). Measurement of Higgs to WW in the all-jet final state at CEPC vs=250 GeV. in Proceedings of Science, 390. https://doi.org/10.22323/1.390.0074
Pandurović M. Measurement of Higgs to WW in the all-jet final state at CEPC vs=250 GeV. in Proceedings of Science. 2021;390. doi:10.22323/1.390.0074 .
Pandurović, Mila, "Measurement of Higgs to WW in the all-jet final state at CEPC vs=250 GeV" in Proceedings of Science, 390 (2021), https://doi.org/10.22323/1.390.0074 . .