A 95 GeV Higgs Boson in the $U(1)_X$SSM

Fuente: arXiv
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Hauptverfasser: Gao, Song, Zhao, Shu-Min, Di, Shuang, Dong, Xing-Xing, Feng, Tai-Fu
Format: Preprint
Veröffentlicht: 2024
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author Gao, Song
Zhao, Shu-Min
Di, Shuang
Dong, Xing-Xing
Feng, Tai-Fu
author_facet Gao, Song
Zhao, Shu-Min
Di, Shuang
Dong, Xing-Xing
Feng, Tai-Fu
contents The CMS and ATLAS Collaborations have recently reported their findings based on the comprehensive run 2 dataset, detailing their searches for a light Higgs boson with a mass of approximately 95 GeV. We investigate the excesses observed in the $γγ$ and $b{\bar b}$ data at approximately 95 GeV in the $U(1)_X$ extension of the minimal supersymmetric standard model ($U(1)_X$SSM). Additionally, it also mixes with the SM-like Higgs boson. Research indicates that, in this model, identifying the mixture of the singlet Higgs states as the lightest Higgs boson holds tremendous potential for explaining the excess observed at approximately 95 GeV. In our calculations, we maintain the masses of the lightest and next-to-lightest Higgs bosons at approximately 95 GeV and 125 GeV, respectively. The study finds that the theoretical predictions for the signal strengths $μ(h_{95})_{γγ}$ and $μ(h_{95})_{b{\bar b}}$ in the $U(1)_X$SSM align well with the excesses observed by CMS.
format Preprint
id arxiv_https___arxiv_org_abs_2411_13261
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A 95 GeV Higgs Boson in the $U(1)_X$SSM
Gao, Song
Zhao, Shu-Min
Di, Shuang
Dong, Xing-Xing
Feng, Tai-Fu
High Energy Physics - Phenomenology
The CMS and ATLAS Collaborations have recently reported their findings based on the comprehensive run 2 dataset, detailing their searches for a light Higgs boson with a mass of approximately 95 GeV. We investigate the excesses observed in the $γγ$ and $b{\bar b}$ data at approximately 95 GeV in the $U(1)_X$ extension of the minimal supersymmetric standard model ($U(1)_X$SSM). Additionally, it also mixes with the SM-like Higgs boson. Research indicates that, in this model, identifying the mixture of the singlet Higgs states as the lightest Higgs boson holds tremendous potential for explaining the excess observed at approximately 95 GeV. In our calculations, we maintain the masses of the lightest and next-to-lightest Higgs bosons at approximately 95 GeV and 125 GeV, respectively. The study finds that the theoretical predictions for the signal strengths $μ(h_{95})_{γγ}$ and $μ(h_{95})_{b{\bar b}}$ in the $U(1)_X$SSM align well with the excesses observed by CMS.
title A 95 GeV Higgs Boson in the $U(1)_X$SSM
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2411.13261