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Leptoquark-mediated Dirac neutrino mass and its impact on B to K ν bar{ν} and K to π ν bar{ν} decays

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arxiv 2503.22431 v1 pith:3TUJTCHD submitted 2025-03-28 hep-ph hep-ex

Leptoquark-mediated Dirac neutrino mass and its impact on B to K ν bar{ν} and K to π ν bar{ν} decays

classification hep-ph hep-ex
keywords neutrinomassmodeldiraccurrentdatadecaysexperimental
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Right-handed neutrinos $\nu_R$ 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 $B\to K \nu \bar\nu$ decays. Assuming $\nu_R$ is the partner of the active neutrino $\nu_L$ 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 $U(1)_X$ symmetry to suppress Majorana mass, tree-level Dirac mass, and diquark couplings. The simplest LQ realization consists of two $S_1 = (3,1,-1/3)$ LQs with distinct $U(1)_X$ 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 $B\to K^{(*)} \nu\bar{\nu}$ and $K^+\to \pi^+ \nu\bar{\nu}$. Additionally, the model predicts excesses in $R_D$ from $B\to D\tau\bar{\nu}$ that remain within $1\sigma$ of current experimental data.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Challenging Majorana neutrino effects in $B\to K^{(\ast)}\nu\nu$ and $K\to \pi\nu\nu$ decays

    hep-ph 2026-07 conditional novelty 6.0

    Belle-II's B→Kνν excess cannot be explained by dimension-7 lepton-number-violating SMEFT operators without fine-tuning neutrino masses, while a light sterile-neutrino extension can, with testable decay spectra.

  2. A Unified Dark Matter Explanation for $\boldsymbol{B^+ \!\to K^+\nu\bar{\nu}}$ and the Super-Kamiokande Antineutrino Excess

    hep-ph 2026-07 conditional novelty 5.0

    A UV-complete complex scalar DM model under gauged U(1)Lμ−Lτ accommodates the SK antineutrino excess, the Belle II B+→K+νν̄ excess, and the DM relic density with one light dark sector.

  3. Dark Matter emission at Belle II and NA62 in Minimal Flavor Violation framework

    hep-ph 2026-01 unverdicted novelty 5.0

    A single nearly degenerate dark matter multiplet in the MFV framework can accommodate either the K+ to pi+ nu nubar or B+ to K+ nu nubar excess but not both simultaneously.

  4. Probing Signatures of Right-Handed Neutrinos via $b \to s \nu \bar\nu$ Decays

    hep-ph 2026-06 unverdicted novelty 4.0

    Model-independent constraints on dimension-six vector operators with right-handed neutrinos from Belle II B to K nu nubar data, predicting enhanced rates in related decays and sensitivity via K* polarization.