ÚTEFČVUT Ústav technické a experimentální fyziky ČVUT v PrazeInstitute of Experimental and Applied Physics, CTU in Prague

Search for leptoquark pair production decaying into te-(t)over-bare+ or tμ-(t)over-barμ+ in multi-lepton final states in pp collisions at √s=13TeV with the ATLAS detector

NázevTitle
Search for leptoquark pair production decaying into te-(t)over-bare+ or tμ-(t)over-barμ+ in multi-lepton final states in pp collisions at √s=13TeV with the ATLAS detectorSearch for leptoquark pair production decaying into te-(t)over-bare+ or tμ-(t)over-barμ+ in multi-lepton final states in pp collisions at √s=13TeV with the ATLAS detector
Druh výsledkuResult type
Článek v časopiseJournal article
AutořiAuthors
G. Aad, B. Abbott, D. C. Abbott, K. Abeling, B. Ali, K. Augsten, B. Bergmann, T. Billoud, M. Havránek, Z. Hubáček, P. Jačka, S. Mondal, M. Myška, L. Novotný, V. Petousis, R. Polifka, S. Pospíšil, K. Smolek, A. Sopczak, V. Vacek, P. Vokáč, O. Zaplatílek
Klíčová slovaKeywords
leptoquark, atlas, top quark
ExperimentCollaboration
ATLAS
DOIDOI
10.1140/epjc/s10052-024-12975-4
Časopis / citaceJournal / citation
The European Physical Journal C 84(8), 818 (2024) · ISSN 1434-6044
RokYear
2024
JazykLanguage
eng
ZáznamyRecords
ProjektProject
Výzkum základních stavebních kamenů hmoty s využitím špičkových technologiíFundamental constituents of matter through frontier technologies; CERN-CZ III - Výzkumná infrastruktura pro experimenty v CERN - LM2023040 (2023–2026)CERN-CZ III - Výzkumná infrastruktura pro experimenty v CERN - LM2023040 (2023–2026)
CitovánoCited by
25 (INSPIRE-HEP)
2023: 32024: 112025: 72026: 4
Citace ke staženíDownload citation
TXT · BibTeX

AbstraktAbstract

A search for leptoquark pair production decaying into te(-)(t) over bare(+) or t mu(-)(t) over bar mu(+) in final states with multiple leptons is presented. The search is based on a dataset of pp collisions at root s = 13TeV recorded with the ATLAS detector during Run 2 of the Large Hadron Collider, corresponding to an integrated luminosity of 139 fb(-1). Four signal regions, with the requirement of at least three light leptons (electron or muon) and at least two jets out of which at least one jet is identified as coming from a b-hadron, are considered based on the number of leptons of a given flavour. The main background processes are estimated using dedicated control regions in a simultaneous fit with the signal regions to data. No excess above the Standard Model background prediction is observed and 95% confidence level limits on the production cross section times branching ratio are derived as a function of the leptoquark mass. Under the assumption of exclusive decays into te(-) (t mu(-)), the corresponding lower limit on the scalar mixed-generation leptoquark mass m(LQmixd) is at 1.58 (1.59) TeV and on the vector leptoquark mass m((U) over tilde1) at 1.67 (1.67) TeV in the minimal coupling scenario and at 1.95 (1.95) TeV in the Yang-Mills scenario.

A search for leptoquark pair production decaying into te(-)(t) over bare(+) or t mu(-)(t) over bar mu(+) in final states with multiple leptons is presented. The search is based on a dataset of pp collisions at root s = 13TeV recorded with the ATLAS detector during Run 2 of the Large Hadron Collider, corresponding to an integrated luminosity of 139 fb(-1). Four signal regions, with the requirement of at least three light leptons (electron or muon) and at least two jets out of which at least one jet is identified as coming from a b-hadron, are considered based on the number of leptons of a given flavour. The main background processes are estimated using dedicated control regions in a simultaneous fit with the signal regions to data. No excess above the Standard Model background prediction is observed and 95% confidence level limits on the production cross section times branching ratio are derived as a function of the leptoquark mass. Under the assumption of exclusive decays into te(-) (t mu(-)), the corresponding lower limit on the scalar mixed-generation leptoquark mass m(LQmixd) is at 1.58 (1.59) TeV and on the vector leptoquark mass m((U) over tilde1) at 1.67 (1.67) TeV in the minimal coupling scenario and at 1.95 (1.95) TeV in the Yang-Mills scenario.

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