Solar energy paper index

Radiative Signature of New Scalar Boson Decays in the $m_{\ell \ell γ}$ Spectrum at the LHC

2026-06-23 · arXiv: 2606.24801

One-line summary

A solar energy research paper on Radiative Signature of New Scalar Boson Decays in the $m_{\ell \ell γ}$ Spectrum at the LHC.

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Chinese explanation / 中文解读

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Original abstract

We investigate the radiative decay $S \to W^+W^-γ$ in the context of the multi-lepton anomalies and recent indications of a narrow scalar resonance near $m_S = 152 \pm 1~\text{GeV}$ in the $γγ$, $Zγ$, and $W^+W^-$ channels at the Large Hadron Collider. These excesses arise in final states containing leptons, missing transverse momentum, and associated $b$-jets, and motivate a search for a corresponding localized excess in the invariant-mass spectrum of the dilepton--photon system, $m_{\ell\ellγ}$, in events with associated $b$-jets. We use recent CMS measurements of the ${t\bar{t}}γ$ differential cross sections~\cite{CMS:2025zbe} to study the $m_{\ell\ellγ}$ spectrum and perform a search for a scalar-resonance contribution. A localized excess is observed, compatible with the scalar-resonance hypothesis, with a global significance of $2.7σ$ at $m_S = 152~\text{GeV}$. This result provides additional support for the hypothesis of a narrow resonance. The ratio $σ(S \to W^+W^-γ)/σ(S \to W^+W^-) = (2.14 \pm 0.77)$\% is extracted. This value is compatible with an enhanced radiative contribution that could arise in scenarios beyond the Standard Model.

5.0Engineering value
7.0Research novelty
4.0Business relevance

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