English

Revealing the $q^2$ dependence in $b \to s \mu^+ \mu^-$ baryonic decay modes

High Energy Physics - Phenomenology 2025-09-18 v2

Abstract

Measurements from the LHCb experiment and BB factories have revealed several discrepancies in angular observables of rare semileptonic BB decays involving the quark-level transition bs+b \to s \ell^+ \ell^-. In this work, we conduct a model-independent comparative analysis of the rare semileptonic decays of baryons Λb\Lambda_b, Σb\Sigma_b and Ξb\Xi_b, exploring various new physics scenarios. Our analysis includes predictions for branching ratios and angular observables, including forward-backward asymmetry, longitudinal polarization fractions, and lepton flavor universality ratios, both within the Standard Model and across six distinct new physics scenarios. Notably, we find that certain new physics scenarios significantly affect the observables in the (Λb,Σb,Ξb)(Λ,Σ,Ξ)μ+μ(\Lambda_b, \Sigma_b, \Xi_b) \to (\Lambda, \Sigma, \Xi) \mu^+ \mu^- processes.

Keywords

Cite

@article{arxiv.2409.09737,
  title  = {Revealing the $q^2$ dependence in $b \to s \mu^+ \mu^-$ baryonic decay modes},
  author = {Ajay Kumar Yadav and Manas Kumar Mohapatra and Suchismita Sahoo},
  journal= {arXiv preprint arXiv:2409.09737},
  year   = {2025}
}

Comments

Accepted for publication in NPB