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Search for new phenomena with top-quark pairs and large missing transverse momentum using 140 fb−1 of pp collision data at √s = 13 TeV with the ATLAS detector ATLAS Collaboration
Abstract
A search is conducted for new phenomena in events with a top quark pair and large missing transverse momentum, where the top quark pair is reconstructed in fnal states with one isolated electron or muon and multiple jets. The search is performed using the Large Hadron Collider proton-proton collision data sample at a centre-of-mass energy of √ s = 13 TeV recorded by the ATLAS detector that corresponds to an integrated luminosity of 140 fb−1 . An analysis based on neural network classifers is optimised to search for directly produced pairs of supersymmetric partners of the top quark (stop), and to search for spin-0 mediators, produced in association with a pair of top quarks, that decay into dark-matter particles. In the stop search, the analysis is designed to target models in which the mass diference between the stop and the neutralino from the stop decay is close to the top quark mass. This new search is combined with previously published searches in fnal states with diferent lepton multiplicities. No signifcant excess above the Standard Model background is observed, and limits at 95% confdence level are set. Models with neutralinos with masses up to 570 GeV are excluded, while for small neutralino masses models are excluded for stop masses up to 1230 GeV. Scalar (pseudoscalar) dark matter mediator masses as large as 350 (370) GeV are excluded when the coupling strengths of the mediator to Standard Model and dark-matter particles are both set to one. At lower mediator masses, models with production cross-sections as small as 0.15 (0.16) times the nominal predictions are excluded. Results of this search are also used to set constraints on efective four-fermion contact interactions between top quarks and neutrinos.
Item Metadata
Title |
Search for new phenomena with top-quark pairs and large missing transverse momentum using 140 fb−1 of pp collision data at √s = 13 TeV with the ATLAS detector
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Creator | |
Publisher |
Springer Berlin Heidelberg
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Date Issued |
2024-03-26
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Description |
A search is conducted for new phenomena in events with a top quark pair and
large missing transverse momentum, where the top quark pair is reconstructed in fnal states
with one isolated electron or muon and multiple jets. The search is performed using the
Large Hadron Collider proton-proton collision data sample at a centre-of-mass energy of
√
s = 13 TeV recorded by the ATLAS detector that corresponds to an integrated luminosity
of 140 fb−1
. An analysis based on neural network classifers is optimised to search for directly
produced pairs of supersymmetric partners of the top quark (stop), and to search for spin-0
mediators, produced in association with a pair of top quarks, that decay into dark-matter
particles. In the stop search, the analysis is designed to target models in which the mass
diference between the stop and the neutralino from the stop decay is close to the top quark
mass. This new search is combined with previously published searches in fnal states with
diferent lepton multiplicities. No signifcant excess above the Standard Model background is
observed, and limits at 95% confdence level are set. Models with neutralinos with masses
up to 570 GeV are excluded, while for small neutralino masses models are excluded for stop
masses up to 1230 GeV. Scalar (pseudoscalar) dark matter mediator masses as large as 350
(370) GeV are excluded when the coupling strengths of the mediator to Standard Model and
dark-matter particles are both set to one. At lower mediator masses, models with production
cross-sections as small as 0.15 (0.16) times the nominal predictions are excluded. Results
of this search are also used to set constraints on efective four-fermion contact interactions
between top quarks and neutrinos.
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Subject | |
Genre | |
Type | |
Language |
eng
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Date Available |
2024-10-24
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Provider |
Vancouver : University of British Columbia Library
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Rights |
Attribution 4.0 International (CC BY 4.0)
|
DOI |
10.14288/1.0447103
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URI | |
Affiliation | |
Citation |
Journal of High Energy Physics. 2024 Mar 26;2024(3):139
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Publisher DOI |
10.1007/JHEP03(2024)139
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Peer Review Status |
Reviewed
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Scholarly Level |
Faculty
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Copyright Holder |
The Author(s)
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Rights URI | |
Aggregated Source Repository |
DSpace
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Item Media
Item Citations and Data
Rights
Attribution 4.0 International (CC BY 4.0)