paper

Leptoquark-mediated Dirac neutrino mass and its impact on and decays

arXiv:2503.22431

Abstract

Right-handed neutrinos play a crucial role in flavor-changing neutral-current processes with missing energy, such as $b\to s + \slashed{E} $ and $d\to s + \slashed{E} $, where Belle-II reports unexpectedly large branching fraction in decays. Assuming is the partner of the active neutrino in the standard model, a Dirac-type neutrino framework emerges. We investigate a scenario of radiative Dirac neutrino mass generation in a scalar leptoquark (LQ) model with a global symmetry to suppress Majorana mass, tree-level Dirac mass, and diquark couplings. The simplest LQ realization consists of two LQs with distinct charges. A non-Casas-Ibarra parametrization is proposed to match neutrino data with fewer model parameters. Imposing current experimental constraints from meson mixing and lepton flavor-violating processes, we find that right-handed neutrino effects can significantly enhance and . Additionally, the model predicts excesses in from that remain within of current experimental data.

31 pages, 5 figures