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arXiv:2503.04023·v4·High Energy Physics — Phenomenology

Constraining the light Higgs bosons in the GNMSSM with recent Higgs data

Zhaoxia Heng🇨🇳 · Zehan Li🇨🇳 · Haijing Zhou🇨🇳

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Abstract

The search for light scalar and pseudoscalar particles provides a promising avenue for probing physics beyond the Standard Model (SM). In this study, we investigated the exotic decay channels of the 125 GeV SM-like Higgs boson into pairs of light CP-odd () or CP-even () Higgs bosons within the framework of the General Next-to-Minimal Supersymmetric Standard Model (GNMSSM). A comprehensive parameter space scan is performed using the MultiNest algorithm, incorporating constraints from , , and ATLAS experimental searches, under two distinct scenarios where either the lightest () or next-to-lightest () CP-even state is the observed Higgs boson (). Our results demonstrate that imposes the most stringent exclusion limits due to its sensitivity to direct searches for non-SM Higgs bosons. In the scenario, can additionally exclude regions with suppressed exotic branching ratios (e.g., ), due to its sensitivity to indirect deviations caused by the kinematically enhanced decay \( h \to h_sh_s \). Under combined constraints from \( \textsf{HiggsTools} \), must retain at least 93\% SM-like component (\( V_h^\text{SM} \geq 0.93 \)) with no more than 32\% singlet admixture (\( V_h^\text{S} \leq 0.32 \)); in the case, the lightest scalar exhibits high singlet purity (). Furthermore, dark matter (DM) phenomenology indicates that singlino- or higgsino-dominated DM is viable in the scenario, with dominant annihilation channels including for singlino-like DM and chargino co-annihilation for higgsino-like DM, whereas the scenario favors higgsino-dominated DM.

Comments: 27 pages, 6 figures

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