Two-body hadronic weak decays of antitriplet charmed baryons
Abstract
We study Cabibbo-favored (CF) and singly Cabibbo-suppressed (SCS) two-body hadronic weak decays of the antitriplet charmed baryons , and with more focus on the last two. Both factorizable and nonfactorizable contributions are considered in the topologic diagram approach. The estimation of nonfactorizable contributions from -exchange and inner -emission diagrams relies on the pole model and current algebra. The non-perturbative parameters in both factorizable and nonfactorizable parts are calculated in the MIT bag model. Branching fractions and up-down decay asymmetries for all the CF and SCS decays of antitriplet charmed baryons are presented. The prediction of agrees well with the measurements inferred from Belle and CLEO, while the calculated is too large compared to the recent Belle measurement. We conclude that these two modes cannot be simultaneously explained within the current-algebra framework for -wave amplitudes. This issue needs to be resolved in future study. The long-standing puzzle with the branching fraction and decay asymmetry of is resolved by noting that only type-II -exchange diagram will contribute to this mode. We find that not only the calculated rate agrees with experiment but also the predicted decay asymmetry is consistent with the SU(3)-flavor symmetry approach in sign and magnitude. Likewise, the CF mode and the SCS decays proceed only through type-II -exchange. They are predicted to have large and {\it positive} decay asymmetries. These features can be tested in the near future.
Keywords
Cite
@article{arxiv.1910.13626,
title = {Two-body hadronic weak decays of antitriplet charmed baryons},
author = {Jinqi Zou and Fanrong Xu and Guanbao Meng and Hai-Yang Cheng},
journal= {arXiv preprint arXiv:1910.13626},
year = {2020}
}
Comments
38 pages, 1 figure, version accepted by PRD