Searches for the Anomalous FCNC Top-Higgs Couplings with Polarized Electron Beam at the LHeC
We study the single top and Higgs associated production e-p→νet-→νehq-(h→bb-) in the top-Higgs FCNC couplings at the LHeC with the electron beam energy of Ee=60 GeV and Ee=120 GeV and combination of a 7 TeV and 50 TeV proton beam. With the possibility of e-beam polarization (pe=0, ±0.6), we distinct...
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doaj-048fd1ce154845c5b1b41fe06ea9ff4a2020-11-24T21:11:08ZengHindawi LimitedAdvances in High Energy Physics1687-73571687-73652017-01-01201710.1155/2017/46932134693213Searches for the Anomalous FCNC Top-Higgs Couplings with Polarized Electron Beam at the LHeCXiaoJuan Wang0Hao Sun1Xuan Luo2Institute of Theoretical Physics, School of Physics & Optoelectronic Technology, Dalian University of Technology, No. 2 Linggong Road, Dalian, Liaoning 116024, ChinaInstitute of Theoretical Physics, School of Physics & Optoelectronic Technology, Dalian University of Technology, No. 2 Linggong Road, Dalian, Liaoning 116024, ChinaInstitute of Theoretical Physics, School of Physics & Optoelectronic Technology, Dalian University of Technology, No. 2 Linggong Road, Dalian, Liaoning 116024, ChinaWe study the single top and Higgs associated production e-p→νet-→νehq-(h→bb-) in the top-Higgs FCNC couplings at the LHeC with the electron beam energy of Ee=60 GeV and Ee=120 GeV and combination of a 7 TeV and 50 TeV proton beam. With the possibility of e-beam polarization (pe=0, ±0.6), we distinct the cut-based method and the multivariate analysis- (MVA-) based method and compare with the current experimental and theoretical limits. It is shown that the branching ratio Br(t→uh) can be probed to 0.113 (0.093%), 0.071 (0.057%), 0.030 (0.022%), and 0.024 (0.019%) with the cut-based (MVA-based) analysis at (Ep, Ee) = (7 TeV, 60 GeV), (Ep, Ee) = (7 TeV, 120 GeV), (Ep, Ee) = (50 TeV, 60 GeV), and (Ep, Ee) = (50 TeV, 120 GeV) beam energy and 1σ level. With the possibility of e-beam polarization, the expected limits can be probed down to 0.090 (0.073%), 0.056 (0.045%), 0.024 (0.018%), and 0.019 (0.015%), respectively.http://dx.doi.org/10.1155/2017/4693213 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
XiaoJuan Wang Hao Sun Xuan Luo |
spellingShingle |
XiaoJuan Wang Hao Sun Xuan Luo Searches for the Anomalous FCNC Top-Higgs Couplings with Polarized Electron Beam at the LHeC Advances in High Energy Physics |
author_facet |
XiaoJuan Wang Hao Sun Xuan Luo |
author_sort |
XiaoJuan Wang |
title |
Searches for the Anomalous FCNC Top-Higgs Couplings with Polarized Electron Beam at the LHeC |
title_short |
Searches for the Anomalous FCNC Top-Higgs Couplings with Polarized Electron Beam at the LHeC |
title_full |
Searches for the Anomalous FCNC Top-Higgs Couplings with Polarized Electron Beam at the LHeC |
title_fullStr |
Searches for the Anomalous FCNC Top-Higgs Couplings with Polarized Electron Beam at the LHeC |
title_full_unstemmed |
Searches for the Anomalous FCNC Top-Higgs Couplings with Polarized Electron Beam at the LHeC |
title_sort |
searches for the anomalous fcnc top-higgs couplings with polarized electron beam at the lhec |
publisher |
Hindawi Limited |
series |
Advances in High Energy Physics |
issn |
1687-7357 1687-7365 |
publishDate |
2017-01-01 |
description |
We study the single top and Higgs associated production e-p→νet-→νehq-(h→bb-) in the top-Higgs FCNC couplings at the LHeC with the electron beam energy of Ee=60 GeV and Ee=120 GeV and combination of a 7 TeV and 50 TeV proton beam. With the possibility of e-beam polarization (pe=0, ±0.6), we distinct the cut-based method and the multivariate analysis- (MVA-) based method and compare with the current experimental and theoretical limits. It is shown that the branching ratio Br(t→uh) can be probed to 0.113 (0.093%), 0.071 (0.057%), 0.030 (0.022%), and 0.024 (0.019%) with the cut-based (MVA-based) analysis at (Ep, Ee) = (7 TeV, 60 GeV), (Ep, Ee) = (7 TeV, 120 GeV), (Ep, Ee) = (50 TeV, 60 GeV), and (Ep, Ee) = (50 TeV, 120 GeV) beam energy and 1σ level. With the possibility of e-beam polarization, the expected limits can be probed down to 0.090 (0.073%), 0.056 (0.045%), 0.024 (0.018%), and 0.019 (0.015%), respectively. |
url |
http://dx.doi.org/10.1155/2017/4693213 |
work_keys_str_mv |
AT xiaojuanwang searchesfortheanomalousfcnctophiggscouplingswithpolarizedelectronbeamatthelhec AT haosun searchesfortheanomalousfcnctophiggscouplingswithpolarizedelectronbeamatthelhec AT xuanluo searchesfortheanomalousfcnctophiggscouplingswithpolarizedelectronbeamatthelhec |
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1716754351606726656 |