Investigation of the scalar unparticle and anomalous couplings at muon colliders in final states with multiple photons in the Randall- Sundrum model

The influence of the scalar unparticle and anomalous couplings at muon colliders in final states with multiple photons in the Randall-Sundrum model is evaluated in detail. The results indicate that with fixed collision energies, the total cross-sections for the production of multiple photons depend...

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Bibliographic Details
Published inarXiv.org
Main Authors Bui Thi Ha Giang, Dang Van Soa, Le, Mai Dung
Format Paper Journal Article
LanguageEnglish
Published Ithaca Cornell University Library, arXiv.org 13.03.2024
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Summary:The influence of the scalar unparticle and anomalous couplings at muon colliders in final states with multiple photons in the Randall-Sundrum model is evaluated in detail. The results indicate that with fixed collision energies, the total cross-sections for the production of multiple photons depend strongly on the polarization of the muon beams, the parameters of unparticle physics (the scaling dimension \(d_{U}\), operator \(\mathcal{O}_{U}\), the energy scale \(\Lambda_{U}\)) and also the strength of anomalous couplings. Numerical evaluation shows that the cross-sections for the production of four photons in finale states with the contribution of scalar anomalous couplings are much larger than that of the unparticle under the same conditions. In the Higgs-radion mixing, the cross sections achieve the maximum value at the radion-dominated state, \(m_{\phi} = 125\) GeV, in which the cross-section is much enhanced and can be measurable in current experiments.
ISSN:2331-8422
DOI:10.48550/arxiv.2304.04931