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том 2021 издание 11 номер публикации 209

Search for dark matter produced in association with a Standard Model Higgs boson decaying into b-quarks using the full Run 2 dataset from the ATLAS detector

Тип публикацииJournal Article
Дата публикации2021-11-01
scimago Q1
wos Q1
БС1
SJR0.833
CiteScore9.9
Impact factor5.5
ISSN10298479, 11266708
Nuclear and High Energy Physics
Краткое описание
Abstract

The production of dark matter in association with Higgs bosons is predicted in several extensions of the Standard Model. An exploration of such scenarios is presented, considering final states with missing transverse momentum and b-tagged jets consistent with a Higgs boson. The analysis uses proton-proton collision data at a centre-of-mass energy of 13 TeV recorded by the ATLAS experiment at the LHC during Run 2, amounting to an integrated luminosity of 139 fb1. The analysis, when compared with previous searches, benefits from a larger dataset, but also has further improvements providing sensitivity to a wider spectrum of signal scenarios. These improvements include both an optimised event selection and advances in the object identification, such as the use of the likelihood-based significance of the missing transverse momentum and variable-radius track-jets. No significant deviation from Standard Model expectations is observed. Limits are set, at 95% confidence level, in two benchmark models with two Higgs doublets extended by either a heavy vector boson Z′ or a pseudoscalar singlet a and which both provide a dark matter candidate χ. In the case of the two-Higgs-doublet model with an additional vector boson Z′, the observed limits extend up to a Z′ mass of 3 TeV for a mass of 100 GeV for the dark matter candidate. The two-Higgs-doublet model with a dark matter particle mass of 10 GeV and an additional pseudoscalar a is excluded for masses of the a up to 520 GeV and 240 GeV for tan β = 1 and tan β = 10 respectively. Limits on the visible cross-sections are set and range from to 0.05 fb to 3.26 fb, depending on the missing transverse momentum and b-quark jet multiplicity requirements.

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Aad G. et al. Search for dark matter produced in association with a Standard Model Higgs boson decaying into b-quarks using the full Run 2 dataset from the ATLAS detector // Journal of High Energy Physics. 2021. Vol. 2021. No. 11. 209
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Aad G. et al. Search for dark matter produced in association with a Standard Model Higgs boson decaying into b-quarks using the full Run 2 dataset from the ATLAS detector // Journal of High Energy Physics. 2021. Vol. 2021. No. 11. 209
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@article{2021_Aad,
author = {G. Aad and B. P. Abbott and Christopher C Abbott and Adam Abed Abud and K Abeling and D K Abhayasinghe and S.M.A. Abidi and O S Abouzeid and HALINA ABRAMOWICZ and Henso Abreu and Y Abulaiti and A. Abusleme and B. S. Acharya and B Achkar and L Adam and C Adam Bourdarios and L Adamczyk and L Adamek and J. Adelman and A Adiguzel and S Adorni and T.J. Adye and A A Affolder and Yoav Afik and C Agapopoulou and M N Agaras and J Agarwala and A. Aggarwal and C Agheorghiesei and J.A. Aguilar-Saavedra and Asad Ahmad and F Ahmadov and Mohammed Salih Ahmed and X. P. Ai and G. Aielli and S Akatsuka and M Akbiyik and T Akesson and Alexander V. Akimov and K Al Khoury and G.L. Alberghi and Justin M. Albert and M J Alconada Verzini and S Alderweireldt and M. Aleksa and Igor Aleksandrov and C Alexa and T Alexopoulos and A Alfonsi and F Alfonsi and others},
title = {Search for dark matter produced in association with a Standard Model Higgs boson decaying into b-quarks using the full Run 2 dataset from the ATLAS detector},
journal = {Journal of High Energy Physics},
year = {2021},
volume = {2021},
publisher = {Springer Nature},
month = {nov},
url = {https://link.springer.com/10.1007/JHEP11(2021)209},
number = {11},
pages = {209},
doi = {10.1007/JHEP11(2021)209}
}