Heavy Hadron Chiral Perturbation Theory
Abstract
The formalism and applications of chiral perturbation theory for hadrons containing a single heavy quark are discussed. We emphasize the utility of working directly with the velocity dependent ``super'' fields which appear in the chiral Lagrangian and whose interactions manifestly preserve heavy quark spin symmetry rather than their individual spin components. Chiral logarithm corrections to meson and baryon Isgur-Wise functions are found using these fields. We also identify a unique dimension-five operator which couples the axial vector Goldstone current to the heavy antitriplet baryon field . We then compute the differential rate for the spin symmetry violating decay T_b(v) \to T_c(v') \ell \bar{\v}_\ell \pi. The ratio of this decay rate to that for the corresponding pure semileptonic transition can be studied away from the zero recoil point.
Cite
@article{arxiv.hep-ph/9208244,
title = {Heavy Hadron Chiral Perturbation Theory},
author = {Peter Cho},
journal= {arXiv preprint arXiv:hep-ph/9208244},
year = {2011}
}
Comments
(19 pages, 4 figures available upon request, users Harvmac.tex), HUTP-92/A039