English

Probing New Physics via the $B^0_s\to \mu^+\mu^-$ Effective Lifetime

High Energy Physics - Phenomenology 2012-07-30 v4 High Energy Physics - Experiment

Abstract

We have recently seen new upper bounds for Bs0μ+μB^0_s\to \mu^+\mu^-, a key decay to search for physics beyond the Standard Model. Furthermore a non-vanishing decay width difference ΔΓs\Delta\Gamma_s of the BsB_s system has been measured. We show that ΔΓs\Delta\Gamma_s affects the extraction of the Bs0μ+μB^0_s\to \mu^+\mu^- branching ratio and the resulting constraints on the New Physics parameter space, and give formulae for including this effect. Moreover, we point out that ΔΓs\Delta\Gamma_s provides a new observable, the effective Bs0μ+μB^0_s\to \mu^+\mu^- lifetime τμ+μ\tau_{\mu^+\mu^-}, which offers a theoretically clean probe for New Physics searches that is complementary to the branching ratio. Should the Bs0μ+μB^0_s\to \mu^+\mu^- branching ratio agree with the Standard Model, the measurement of τμ+μ\tau_{\mu^+\mu^-}, which appears feasible at upgrades of the LHC experiments, may still reveal large New Physics effects.

Keywords

Cite

@article{arxiv.1204.1737,
  title  = {Probing New Physics via the $B^0_s\to \mu^+\mu^-$ Effective Lifetime},
  author = {Kristof De Bruyn and Robert Fleischer and Robert Knegjens and Patrick Koppenburg and Marcel Merk and Antonio Pellegrino and Niels Tuning},
  journal= {arXiv preprint arXiv:1204.1737},
  year   = {2012}
}

Comments

6 pages, 2 figures, title matches published version in Physical Review Letters