Rare $ Λ_c $ decays and new physics effects

Fuente: arXiv
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Autori principali: Zhang, Sheng-Qi, Qiao, Cong-Feng
Natura: Preprint
Pubblicazione: 2024
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author Zhang, Sheng-Qi
Qiao, Cong-Feng
author_facet Zhang, Sheng-Qi
Qiao, Cong-Feng
contents Recent experimental progress on baryonic rare decays has spurred a deeper investigation on flavor-changing neutral current transitions in the baryon sector. Within the framework of QCD sum rules, we derive a complete set of form factors for the $ Λ_c\to p $ process in the large recoil region and use the $z$-series parametrization to extrapolate them across the full physical range. Employing these form factors and flavor symmetries, we compute branching fractions for the decays $Λ_c \to p e^+ e^-$ and $Λ_c \to p μ^+ μ^-$, as well as for rare $ Ξ_c $ decay modes. We examine as well the new physics effects through specific angular observables such as the lepton forward-backward asymmetry and the fraction of longitudinally polarized dileptons. Results indicate that new physics models may be testified in baryonic rare decays, with immense data collected in running and future colliders.
format Preprint
id arxiv_https___arxiv_org_abs_2411_15857
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Rare $ Λ_c $ decays and new physics effects
Zhang, Sheng-Qi
Qiao, Cong-Feng
High Energy Physics - Phenomenology
Recent experimental progress on baryonic rare decays has spurred a deeper investigation on flavor-changing neutral current transitions in the baryon sector. Within the framework of QCD sum rules, we derive a complete set of form factors for the $ Λ_c\to p $ process in the large recoil region and use the $z$-series parametrization to extrapolate them across the full physical range. Employing these form factors and flavor symmetries, we compute branching fractions for the decays $Λ_c \to p e^+ e^-$ and $Λ_c \to p μ^+ μ^-$, as well as for rare $ Ξ_c $ decay modes. We examine as well the new physics effects through specific angular observables such as the lepton forward-backward asymmetry and the fraction of longitudinally polarized dileptons. Results indicate that new physics models may be testified in baryonic rare decays, with immense data collected in running and future colliders.
title Rare $ Λ_c $ decays and new physics effects
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2411.15857