Explaining 650 GeV and 95 GeV anomalies in the 2-Higgs doublet model type-I

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dc.contributor.author Khanna, Akshat
dc.contributor.author Moretti, Stefano
dc.contributor.author Sarkar, Agnivo
dc.coverage.spatial United States of America
dc.date.accessioned 2025-09-18T15:35:31Z
dc.date.available 2025-09-18T15:35:31Z
dc.date.issued 2025-09
dc.identifier.citation Khanna, Akshat; Moretti, Stefano and Sarkar, Agnivo, "Explaining 650 GeV and 95 GeV anomalies in the 2-Higgs doublet model type-I", arXiv, Cornell University Library, DOI: arXiv:2509.06017, Sep. 2025.
dc.identifier.issn 2331-8422
dc.identifier.uri https://doi.org/10.48550/arXiv.2509.06017
dc.identifier.uri https://repository.iitgn.ac.in/handle/123456789/12144
dc.description.abstract We propose an interpretation of a rather significant 650 GeV excess emerged at the Large Hadron Collider (LHC) from CMS Collaboration data in the final state, accompanied by further clusters at 125(90-100) GeV in the system, within the 2-Higgs Doublet Model Type-I (2HDM-I) in presence of a softly broken symmetry. The underlying process that we probe is -initiated production of a CP-odd (or pseudoscalar) Higgs boson , with mass around 650 GeV, decaying into the Standard Model (SM)-like Higgs state (decaying into ) and a boson (decaying into ). We configure this theoretical framework so as to also have in the spectrum a light CP-even (or scalar) Higgs state with mass around 95 GeV, which is included for the purpose of simultaneously explaining additional data anomalies seen in the , and final states while searching for light Higgs states at the Large Electron-Positron (LEP) collider (the first one) and LHC (the last two). By accounting for both experimental and theoretical constraints, our results show that the 2HDM-I can explain all aforementioned anomalies at a significance level of .
dc.description.statementofresponsibility by Akshat Khanna, Stefano Moretti and Agnivo Sarkar
dc.language.iso en_US
dc.publisher Cornell University Library
dc.title Explaining 650 GeV and 95 GeV anomalies in the 2-Higgs doublet model type-I
dc.type Article
dc.relation.journal arXiv


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