English

Weak Decays of Doubly Heavy Baryons: ${\cal B}_{cc}\to {\cal B} D^{(*)}$

High Energy Physics - Phenomenology 2021-02-23 v2

Abstract

The discovery of Ξcc++\Xi_{cc}^{++} has inspired new interest in studying doubly heavy baryons. In this study, the weak decays of a doubly charmed baryon Bcc{\cal B}_{cc} to a light baryon B{\cal B} and a charm meson D()D^{(*)} (either a pseudoscalar or a vector one) are calculated. Following our previous work, we calculate the short distance contributions under the factorization hypothesis, whereas the long distance contributions are modeled as the final state interactions which are calculated with the one particle exchange model. We find that the BccBD{\cal B}_{cc}\to {\cal B} D^{*} decays' branching ratios are obviously larger, as they receive contributions of more polarization states. Among the decays that we investigate, the following have the largest branching fractions: BR(Ξcc++Σ+D+)[0.46%,3.33%]{\cal BR}(\Xi_{cc}^{++}\rightarrow\Sigma^{+}D^{*+}) \in [0.46\%, 3.33\%] estimated with τΞcc++=256\tau_{\Xi_{cc}^{++}}=256 fs; BR(Ξcc+ΛD+)[0.38%,2.63%]{\cal BR}(\Xi_{cc}^{+}\rightarrow\Lambda D^{*+}) \in [0.38\%, 2.63\%] and BR(Ξcc+Σ0D+)[0.45%,3.16%]{\cal BR}(\Xi_{cc}^{+}\rightarrow\Sigma^{0} D^{*+}) \in [0.45\%, 3.16\%] with τΞcc+=45\tau_{\Xi_{cc}^+}=45 fs; and BR(Ωcc+Ξ0D+)[0.27%,1.03%]{\cal BR}(\Omega_{cc}^{+}\rightarrow\Xi^{0} D^{*+}) \in [0.27\%, 1.03\%], BR(Ωcc+Ξ0D+)[0.07%,0.44%]{\cal BR}(\Omega_{cc}^{+}\rightarrow\Xi^{0} D^{+}) \in [0.07\%, 0.44\%] and BR(Ωcc+Σ0D+)[0.06%,0.45%]{\cal BR}(\Omega_{cc}^{+}\rightarrow\Sigma^{0} D^{*+}) \in [0.06\%, 0.45\%] with τΩcc+=75\tau_{\Omega_{cc}^+}=75 fs. By comparing the decay widths of pure color commensurate channels with those of pure bow-tie ones, we find that the bow-tie mechanism plays an important role in charm decays.

Keywords

Cite

@article{arxiv.2010.09362,
  title  = {Weak Decays of Doubly Heavy Baryons: ${\cal B}_{cc}\to {\cal B} D^{(*)}$},
  author = {Run-Hui Li and Juan-Juan Hou and Bei He and Ya-Ru Wang},
  journal= {arXiv preprint arXiv:2010.09362},
  year   = {2021}
}

Comments

21 pages, 4 figures, 8 tables; Published version