Search for physics beyond the standard model in top quark production with additional leptons in the context of effective field theory

被引:0
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作者
A. Hayrapetyan
A. Tumasyan
W. Adam
J. W. Andrejkovic
T. Bergauer
S. Chatterjee
K. Damanakis
M. Dragicevic
A. Escalante Del Valle
P. S. Hussain
M. Jeitler
N. Krammer
D. Liko
I. Mikulec
J. Schieck
R. Schöfbeck
D. Schwarz
M. Sonawane
S. Templ
W. Waltenberger
C.-E. Wulz
M. R. Darwish
T. Janssen
P. Van Mechelen
E. S. Bols
J. D’Hondt
S. Dansana
A. De Moor
M. Delcourt
H. El Faham
S. Lowette
I. Makarenko
A. Morton
D. Müller
A. R. Sahasransu
S. Tavernier
M. Tytgat
S. Van Putte
D. Vannerom
B. Clerbaux
G. De Lentdecker
L. Favart
D. Hohov
J. Jaramillo
A. Khalilzadeh
K. Lee
M. Mahdavikhorrami
A. Malara
S. Paredes
L. Pétré
机构
[1] Yerevan Physics Institute,Universidade Estadual Paulista
[2] Institut für Hochenergiephysik,Institute for Nuclear Research and Nuclear Energy
[3] Universiteit Antwerpen,Instituto De Alta Investigación
[4] Vrije Universiteit Brussel,Department of Physics
[5] Université Libre de Bruxelles,State Key Laboratory of Nuclear Physics and Technology
[6] Ghent University,University of Split, Faculty of Electrical Engineering
[7] Université Catholique de Louvain,Center for High Energy Physics (CHEP
[8] Centro Brasileiro de Pesquisas Fisicas,FU)
[9] Universidade do Estado do Rio de Janeiro,Department of Physics
[10] Universidade Federal do ABC,Laboratoire Leprince
[11] Bulgarian Academy of Sciences,Ringuet, CNRS/IN2P3, Ecole Polytechnique
[12] University of Sofia,Institute of Nuclear and Particle Physics (INPP)
[13] Universidad de Tarapacá,MTA
[14] Beihang University,ELTE Lendület CMS Particle and Nuclear Physics Group
[15] Tsinghua University,Institute of Physics
[16] Institute of High Energy Physics,College of Engineering and Technology
[17] Peking University,National Centre for Particle Physics
[18] Sun Yat-Sen University,National Centre for Physics
[19] University of Science and Technology of China,Institute of Experimental Physics, Faculty of Physics
[20] Institute of Modern Physics and Key Laboratory of Nuclear Physics and Ion-beam Application (MOE) — Fudan University,Faculty of Physics
[21] Zhejiang University,VINCA Institute of Nuclear Sciences
[22] Universidad de Los Andes,Instituto de Física de Cantabria (IFCA)
[23] Universidad de Antioquia,Physics Department, Faculty of Science
[24] Mechanical Engineering and Naval Architecture,Faculty of Informatics
[25] University of Split,Department of Physics
[26] Faculty of Science,Department of Physics
[27] Institute Rudjer Boskovic,Scuola Superiore Meridionale
[28] University of Cyprus,Department of Applied Physics, Faculty of Science and Technology
[29] Charles University,Trincomalee Campus
[30] Escuela Politecnica Nacional,INFN Sezione di Pavia
[31] Universidad San Francisco de Quito,School of Physics and Astronomy
[32] Academy of Scientific Research and Technology of the Arab Republic of Egypt,undefined
[33] Egyptian Network of High Energy Physics,undefined
[34] Fayoum University,undefined
[35] National Institute of Chemical Physics and Biophysics,undefined
[36] University of Helsinki,undefined
[37] Helsinki Institute of Physics,undefined
[38] Lappeenranta-Lahti University of Technology,undefined
[39] IRFU,undefined
[40] CEA,undefined
[41] Université Paris-Saclay,undefined
[42] Institut Polytechnique de Paris,undefined
[43] Université de Strasbourg,undefined
[44] CNRS,undefined
[45] IPHC UMR 7178,undefined
[46] Institut de Physique des 2 Infinis de Lyon (IP2I),undefined
[47] Georgian Technical University,undefined
[48] RWTH Aachen University,undefined
[49] I. Physikalisches Institut,undefined
[50] RWTH Aachen University,undefined
关键词
Beyond Standard Model; Hadron-Hadron Scattering; Top Physics;
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摘要
A search for new physics in top quark production with additional final-state leptons is performed using data collected by the CMS experiment in proton-proton collisions at s\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$ \sqrt{s} $$\end{document} = 13 TeV at the LHC during 2016–2018. The data set corresponds to an integrated luminosity of 138 fb−1. Using the framework of effective field theory (EFT), potential new physics effects are parametrized in terms of 26 dimension-six EFT operators. The impacts of EFT operators are incorporated through the event-level reweighting of Monte Carlo simulations, which allows for detector-level predictions. The events are divided into several categories based on lepton multiplicity, total lepton charge, jet multiplicity, and b-tagged jet multiplicity. Kinematic variables corresponding to the transverse momentum (pT) of the leading pair of leptons and/or jets as well as the pT of on-shell Z bosons are used to extract the 95% confidence intervals of the 26 Wilson coefficients corresponding to these EFT operators. No significant deviation with respect to the standard model prediction is found.
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