English

$b \rightarrow s \gamma$ and $B_s \rightarrow \mu^+ \mu^-$ in Extended Technicolor Models

High Energy Physics - Phenomenology 2009-09-15 v1

Abstract

The rates of the rare flavor-changing processes, bsγb \rightarrow s \gamma and Bsμ+μB_s \rightarrow \mu^+ \mu^- are estimated in extended technicolor models with and without a GIM mechanism. We find the bsγb \rightarrow s \gamma rate in ETC models with a GIM mechanism to be at most slightly larger than the standard model rate, whereas there is no significant extra model-independent contribution in other ETC scenarios. In the case of Bsμ+μB_s \rightarrow \mu^+ \mu^-, ETC models with a GIM mechanism can yield a rate up to two orders of magnitude bigger than that of the standard model, whereas generic ETC scenarios are likely to give a rate which is about an order of magnitude bigger than that of the standard model.

Keywords

Cite

@article{arxiv.hep-ph/9305289,
  title  = {$b \rightarrow s \gamma$ and $B_s \rightarrow \mu^+ \mu^-$ in Extended Technicolor Models},
  author = {Lisa Randall and Raman Sundrum},
  journal= {arXiv preprint arXiv:hep-ph/9305289},
  year   = {2009}
}

Comments

15 pages, 1 figure (available upon request), MIT-CTP-2211, LBL-34110, UCB-PTH-93/17