2024/10/15 by F. U. Bernlochner, Marco Fedele, Bernlochner, Florian U. +6 · 3 citations
Physics and Astronomy · #Particle physics theoretical and experimental studies #Neutrino Physics Research #Quantum Chromodynamics and Particle Interactions
paper · pdf · doi:10.48550/arxiv.2410.11945
In this paper we study the bounds that can be inferred on New Physics couplings to heavy sterile neutrinos N from the recent measurements performed by the Belle collaboration of the angular analysis of B→ D^*ℓν_ℓ decays, with ℓ=e,μ. Indeed, a sterile neutrino N may lead to competing B→ D^*ℓ N decays and Belle might have measured an incoherent sum of these two independent channels. After reviewing the theoretical formalism required to describe this phenomenon in full generality, we first perform a bump hunt in the M\rm miss2 Belle distribution to search for evidences of an additional massive neutrino. We found in such a way a small hint at M\rm miss2 ∼ (350 \rm MeV)2. However, the Belle angular analysis is sensitive to N masses up to O(50 MeV), preventing us to further inspect this hint. Nevertheless, we study the potential impact of this additional channel in the allowed mass range on the measured angular distributions and extract model-independent bounds on the new-physics couplings which could mediate such an interaction. In particular, in the mass window here inspected, we obtain the most stringent bounds for vector and left-handed scalar operators to date.