Search for exotic decays of the Higgs boson to a pair of pseudoscalars in the μμbb and ττbb final states
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Hayrapetyan, A.; Bhowmik, Sandeep; Blanco Fernández, Sergio













Fecha
2024-05Derechos
This article is licensed under a Creative Commons Attribution 4.0 International License,which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made.
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European Physical Journal C, 2024, 84(5), 493
Editorial
Springer New York LLC
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Resumen/Abstract
Asearch for exotic decays of theHiggs boson (H) with a mass of 125 GeV to a pair of light pseudoscalars a1 is performed in final states where one pseudoscalar decays to two b quarks and the other to a pair of muons or τ leptons. A data sample of proton–proton collisions at
√s = 13 TeVcorresponding to an integrated luminosity of 138 fb−¹ recorded with the CMS detector is analyzed. No statistically significant excess is observed over the standardmodel backgrounds. Upper limits are set at 95% confidence level (CL) on the Higgs boson branching fraction to μμbb and to ττbb, via a pair of a₁s. The limits depend on the pseudoscalar mass ma₁ and are observed to be in the range (0.17–3.3) ×10−⁴ and
(1.7–7.7) ×10−² in the μμbb and ττbb final states, respectively. In the framework of models with two Higgs doublets and a complex scalar singlet (2HDM+S), the results of the
two final states are combined to determine upper limits on the branching fraction B(H → a₁a₁ → llbb) at 95% CL, with l being a muon or a τ lepton. For different types of 2HDM+S,
upper bounds on the branching fraction B(H → a1a1) are extracted from the combination of the two channels. In most of the Type II 2HDM+S parameter space, B(H → a₁a₁) values above 0.23 are excluded at 95% CL for ma₁ values between 15 and 60 GeV.
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