English

How large could CP violation in neutral $B$ meson mixing be? Implications for baryogenesis and upcoming searches

High Energy Physics - Phenomenology 2024-10-21 v1 Cosmology and Nongalactic Astrophysics High Energy Physics - Experiment

Abstract

CP violation in neutral BB meson oscillations is an experimental observable that could be directly related to the baryon asymmetry of the Universe through the BB-Mesogenesis mechanism. As this phenomenon is highly suppressed in the Standard Model, it could also be a sensitive probe for many new physics scenarios that modify neutral meson mixing. Motivated by these facts, and the timely BB physics program at the LHC and Belle II, we analyze how large CP violation in the mixing of neutral BdB_d and BsB_s meson systems could be. We answer this question, in light of current experimental data, within three different scenarios, namely: (i) generic heavy new physics only affecting the mass mixing M12qM_{12}^q, (ii) vector-like quark extensions that introduce deviations of 3×\times3 CKM unitarity, and (iii) light new physics modifying the decay mixing Γ12q\Gamma_{12}^q. We find that enhancements of the semileptonic asymmetries, that measure the amount of CP violation in mixing, at the level of 10310^{-3} for the BdB_d system and 10410^{-4} for the BsB_s system can be achieved within scenarios (i) and (ii), while they are much more suppressed in realistic UV completions triggering scenario (iii). With respect to cosmology, the difficulty of finding large CP asymmetries in our analysis puts the BB-Mesogenesis mechanism in tension. Finally, we conclude that upcoming experimental searches for CP violation in BB meson mixing at LHCb and Belle II are unlikely to detect a new physics signal for the most generic models.

Keywords

Cite

@article{arxiv.2410.13936,
  title  = {How large could CP violation in neutral $B$ meson mixing be? Implications for baryogenesis and upcoming searches},
  author = {Carlos Miró and Miguel Escudero and Miguel Nebot},
  journal= {arXiv preprint arXiv:2410.13936},
  year   = {2024}
}

Comments

28 pages, 8 figures, 5 appendices. Comments are welcome