中文

b \to s l \bar l $ in the minimal supergravity model

高能物理 - 唯象学 2014-11-17 v1

摘要

The bsl+lb \rightarrow s l^+ l^- process is studied in the minimal supergravity model in detail. Taking account of the long distance contributions from the ccc\overline{c} resonances, we calculate the branching ratio and the lepton forward-backward asymmetry in this model. We find that there is a strong correlation between the branching ratios of bsγb \rightarrow s \gamma and bsl+lb \rightarrow s l^+ l^- processes and that the interference effect can change the bsl+lb \rightarrow s l^+ l^- branching ratio in the off-resonance regions by up to ±15\pm 15% depending on the relative phase between the long and short distance contributions. Using various phenomenological constraints including the branching ratio of bsγb \rightarrow s \gamma, we show that there are regions in the parameter space where the branching ratio of bsl+lb \rightarrow s l^+ l^- is enhanced by about 50% compared to the SM. We also show that the branching ratio of bsννb \rightarrow s \nu{\overline \nu} is reduced at most by 10% from the SM prediction.

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引用

@article{arxiv.hep-ph/9609512,
  title  = {$b \to s l \bar l $ in the minimal supergravity model},
  author = {Toru Goto and Yasuhiro Okada and Yasuhiro Shimizu and Minoru Tanaka},
  journal= {arXiv preprint arXiv:hep-ph/9609512},
  year   = {2014}
}

备注

LaTeX, 52 pages including figures