English

$B^*_s\rightarrow l^+l^-$ decays in light of recent $B$ anomalies

High Energy Physics - Phenomenology 2021-05-24 v1 High Energy Physics - Experiment

Abstract

Some of the recent measurements in the neutral current sector bsl+lb\rightarrow s l^+l^- (l=el=e or μ\mu) as well as in the charged current sector bcτνˉb \rightarrow c \tau \bar{\nu} show significant deviations from their Standard Model predictions. It has been shown that two different new physics solutions, in the form of vector and/or axial vector, can explain all the anomalies in bsl+lb\rightarrow s l^+l^- sector. We show that the muon longitudinal polarization asymmetry in Bsμ+μB^*_s\rightarrow \mu^+\,\mu^- decay is a good discriminant between the two solutions if it can be measured to a precision of 10%\sim 10\%, provided the new physics Wilson coefficients are real. We also investigate the potential impact of bcτνˉb \rightarrow c \tau \bar{\nu} anomalies on Bsτ+τB_s^* \rightarrow \tau^+ \tau^- decay. We consider a model where the new physics contributions to these two transitions are strongly correlated. We find that two orders of magnitude enhancement in the branching ratio of Bsτ+τB^*_s\rightarrow \tau^+\,\tau^- is allowed by the present bcτνˉb \rightarrow c \tau \bar{\nu} data.

Keywords

Cite

@article{arxiv.1907.01305,
  title  = {$B^*_s\rightarrow l^+l^-$ decays in light of recent $B$ anomalies},
  author = {Suman Kumbhakar and Jyoti Saini},
  journal= {arXiv preprint arXiv:1907.01305},
  year   = {2021}
}

Comments

6 pages, 1 figure, Contribution to proceedings of XXIII DAE-BRNS HEP Symposium 2018, Dec. 10-14, 2018, Chennai, India