Effective Lagrangian Approach to Weak Radiative Decays of Heavy Hadrons
Abstract
Motivated by the observation of the decay by CLEO, we have systematically analyzed the two-body weak radiative decays of bottom and charmed hadrons. There exist two types of weak radiative decays: One proceeds through the short-distance transition and the other occurs through -exchange accompanied by a photon emission. Effective Lagrangians are derived for the -exchange bremsstrahlung processes at the quark level and then applied to various weak electromagnetic decays of heavy hadrons. Predictions for the branching ratios of and are given. In particular, we found . Order of magnitude estimates for the weak radiative decays of charmed hadrons: and are also presented. Within this approach, the decay asymmetry for antitriplet to antitriplet heavy baryon weak radiative transitions is uniquely predicted by heavy quark symmetry. The electromagnetic penguin contribution to is estimated by two different methods and its branching ratio is found to be of order . We conclude that weak radiative decays of bottom hadrons are dominated by the short-distance mechanism.
Keywords
Cite
@article{arxiv.hep-ph/9407303,
title = {Effective Lagrangian Approach to Weak Radiative Decays of Heavy Hadrons},
author = {Hai-Yang Cheng and Chi-Yee Cheung and Guey-Lin Lin and Y. C. Lin and Tung-Mow Yan and Hoi-Lai Yu},
journal= {arXiv preprint arXiv:hep-ph/9407303},
year = {2011}
}
Comments
28 pages + 3 figures (not included), CLNS 94/1278, IP-ASTP-04-94. [Main changes in this revised version: (i) Sect 2 and subsection 4.1 are revised, (ii) A MIT bag method for calculating the decay rate of $Lambda_b \to\Lambda+gamma$ is presented, (iii) All predictions are updated using the newly available 1994 Particle Data Group, and (iv) Appendix and subsections 3.3 and 4.4 are deleted.]