English

$\Delta M_s$ theory precision confronts flavour anomalies

High Energy Physics - Phenomenology 2019-12-13 v2

Abstract

Based on recent HQET sum rule and lattice calculations we present updated Standard Model predictions for the mass differences of neutral BB mesons: ΔMsSM=(18.41.2+0.7)\mboxps1\Delta M_s^{\rm SM} = \left(18.4^{+0.7}_{-1.2} \right) \mbox{ps}^{-1} and ΔMdSM=(0.5330.036+0.022)\mboxps1\Delta M_d^{\rm SM} = \left(0.533^{+0.022}_{-0.036} \right) \mbox{ps}^{-1} and study their impact on new physics models that address the present hints of anomalous data in bsb \to s \ell \ell transitions. We also examine future prospects of further reducing the theory uncertainties and discuss the implications of a 2025 scenario with ΔMsSM 2025=(18.4±0.5)\mboxps1\Delta M_s^\text{SM 2025} = \left(18.4 \pm 0.5\right) \mbox{ps}^{-1}. In particular, the latter yields upper bounds MZ9 TeVM_{Z'}\lesssim 9~\text{TeV} and MS330 TeVM_{S_3}\lesssim 30~\text{TeV} for the minimal ZZ' and S3S_3 lepto-quark explanations of the bsb \to s \ell \ell anomalies, respectively.

Keywords

Cite

@article{arxiv.1909.11087,
  title  = {$\Delta M_s$ theory precision confronts flavour anomalies},
  author = {Luca Di Luzio and Matthew Kirk and Alexander Lenz and Thomas Rauh},
  journal= {arXiv preprint arXiv:1909.11087},
  year   = {2019}
}

Comments

34 pages, 8 figures. v2 fixes missing text in Section 3.4, adds references

R2 v1 2026-06-23T11:24:40.171Z