English

Studying of Bs --> K(*)-pi+, K(*)-rho+ decays within supersymmetry

High Energy Physics - Phenomenology 2014-11-21 v1

Abstract

Recent results from CDF Collaboration favor a large CP asymmetry in BsKπ+B_s\rightarrow K^-\pi^+ decay, while the Standard Model prediction is very small. Moreover, the measurement of its branching ratio is lower than the Standard Model prediction based on the QCD factorization. We compute the gluino-mediated supersymmetry contributions to BsK()π+B_{s}\to K^{(*)-}\pi^{+},K()ρ+K^{(*)-}\rho^{+} decays in the frame of the mass insertion method, and find that for mg~2mq~22\frac{m^2_{\tilde{g}}}{m^2_{\tilde{q}}}\leq2, the theoretical predictions including the LR and RL mass insertion contributions are compatible with the measurements of BsKπ+B_s\to K^-\pi^+ decay and B0Bˉ0B^0-\bar{B}^0 mixing within 2σ2\sigma ranges. Using the constrained LR and RL mass insertion parameter spaces, we explore the supersymmetry mass insertion effects on the branching ratios, the direct CP asymmetries and the polarization fractions in BsKπ+,Kρ+,Kρ+B_{s}\to K^{*-}\pi^+, K^{-}\rho^+, K^{*-}\rho^+ decays. We find the constrained LR and RL insertions can provide sizable contributions to the branching ratios of BsKπ+B_{s}\to K^{*-}\pi^{+},K()ρ+K^{(*)-}\rho^{+} as well as the direct CP asymmetry and the longitudinal polarization of BsKρ+B_{s}\to K^{*-}\rho^{+} decay without conflict with all related data within 2σ2\sigma ranges. Near future experiments at Fermi Lab and CERN LHC-b can test our predictions and shrink/reveal the mass insertion parameter spaces.

Keywords

Cite

@article{arxiv.1007.2943,
  title  = {Studying of Bs --> K(*)-pi+, K(*)-rho+ decays within supersymmetry},
  author = {Ru-Min Wang and Yuan-Guo Xu},
  journal= {arXiv preprint arXiv:1007.2943},
  year   = {2014}
}

Comments

27 pages, 8 figures