Direct CP Violation in \Lambda_b -> n (\Lambda)\pi^+\pi^- Decays via \rho-\omega Mixing
High Energy Physics - Phenomenology
2010-02-17 v1 High Energy Physics - Experiment
Abstract
We study direct CP violation in the bottom baryon decays \Lambda_b -> f \rho^0 (\omega) -> f\pi^+\pi^- (f=n or \Lambda). It is found that in these decays via \rho-\omega mixing the CP violation could be very large when the invariant mass of the \pi^+\pi^- pair is in the vicinity of the \omega resonance. With a typical value N_c =2 in the factorization approach, the maximum CP-violating asymmetries are more than 50% and 68% for \Lambda_b -> n \pi^+\pi^- and \Lambda_b -> \Lambda \pi^+\pi^-, respectively. With the aid of heavy quark symmetry and phenomenological models for the hadronic wave functions of \Lambda_b, \Lambda and the neutron, we estimate the branching ratios of \Lambda_b -> n (\Lambda)\rho^0.
Cite
@article{arxiv.hep-ph/9805332,
title = {Direct CP Violation in \Lambda_b -> n (\Lambda)\pi^+\pi^- Decays via \rho-\omega Mixing},
author = {X. -H. Guo and A. W. Thomas},
journal= {arXiv preprint arXiv:hep-ph/9805332},
year = {2010}
}
Comments
20 pages, 2 figires, Latex