English

Diquark Explanation of $b\to s\ell^+\ell^-$

High Energy Physics - Phenomenology 2023-12-06 v2 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

The discrepancies between bs+b\to s\ell^+\ell^- data and the corresponding Standard Model predictions point to the existence of new physics with a significance at the 5σ5\sigma level. While previously a lepton flavour universality violating effect was preferred, the new R(K())R(K^{(*)}) and Bsμ+μB_s\to\mu^+\mu^- measurements are now compatible with the Standard Model, favouring a lepton flavour universal beyond the Standard Model contribution to C9C_9. Since heavy new physics is generally chiral, and because of the stringent constraints from charged lepton flavour violation, this poses a challenge for model building. In this article, we point out a novel possibility: a diquark, i.e. a coloured scalar, induces the Wilson coefficient of the (sˉγμPLb)(cˉγμPLc)(\bar s \gamma^\mu P_L b) (\bar c \gamma_\mu P_L c) operator at tree-level, which then mixes into O9O_9 via an off-shell photon penguin. This setup allows for a lepton flavour universal effect of C90.5C_9\approx-0.5, without violating bounds from ΔMs\Delta M_s, ΔΓ\Delta\Gamma, BXsγB\to X_s\gamma and D0Dˉ0D^0-\bar D^0 mixing. This scenario predicts a small and negative C9C_9^{\prime} and a light diquark, preferably with a mass around 500500\,GeV, as compatible with the CMS di-di-jet analysis, and a deficit in the inclusive bccˉsb\to c\bar c s rate.

Keywords

Cite

@article{arxiv.2309.07205,
  title  = {Diquark Explanation of $b\to s\ell^+\ell^-$},
  author = {Andreas Crivellin and Matthew Kirk},
  journal= {arXiv preprint arXiv:2309.07205},
  year   = {2023}
}

Comments

12 pages, 1 figure. v2: Journal version - added references, fixed typos, moved some large equations to appendix