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Unraveling New Physics Effects in b → s ℓ12 Transitions with a Model-Independent Perspective

2025/05/08 by Bhatta, Aishwarya, Panda, Dhiren, Mohanta, Rukmani
#FOS: Physical sciences #High Energy Physics - Phenomenology (hep-ph)

paper · doi:10.48550/arxiv.2505.05125

Abstract

Motivated by recent anomalies in observables associated with flavor-changing neutral current (FCNC) transitions, specifically b → s ℓ+- processes, we present a comprehensive analysis of lepton flavor-violating (LFV) decay modes mediated by b → s ℓ12 transitions with ℓ1 ≠ ℓ2. While such LFV processes are forbidden within the Standard Model (SM), they naturally arise in several of its extensions, including models featuring additional vector-like fermions and extra Z' bosons. Employing the most general effective Hamiltonian for b → s ℓ12 transitions, we derive the angular distributions of the relevant decay modes. Adopting a model-independent framework, we systematically study the LFV decays B → K^* ℓ12, Bs → ϕℓ12, B → K2^* ℓ12, and Λb → Λℓ12. Although LFV mesonic decays have been widely explored, the corresponding baryonic decays remain comparatively under-investigated. We provide bounds on branching ratio (B), forward-backward asymmetry (AFB), and longitudinal lepton polarization fraction (FL). Furthermore, considering the projected sensitivities of the LHCb upgrade and Belle II experiments, we estimate upper limits for these observables, offering promising avenues for probing new physics in these LFV channels.

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