English

Lifetimes of Doubly Charmed Baryons

High Energy Physics - Phenomenology 2018-12-19 v2 High Energy Physics - Experiment

Abstract

The lifetimes of doubly charmed hadrons are analyzed within the framework of the heavy quark expansion (HQE). Lifetime differences arise from spectator effects such as WW-exchange and Pauli interference. The Ξcc++\Xi_{cc}^{++} baryon is longest-lived in the doubly charmed baryon system owing to the destructive Pauli interference absent in the Ξcc+\Xi_{cc}^+ and Ωcc+\Omega_{cc}^+. In the presence of dimension-7 contributions, its lifetime is reduced from 5.2×1013s\sim5.2\times 10^{-13}s to 3.0×1013s\sim3.0\times 10^{-13}s. The Ξcc+\Xi_{cc}^{+} baryon has the shortest lifetime of order 0.45×1013s0.45\times 10^{-13}s due to a large contribution from the WW-exchange box diagram. It is difficult to make a precise quantitative statement on the lifetime of Ωcc+\Omega_{cc}^+. Contrary to Ξcc\Xi_{cc} baryons, τ(Ωcc+)\tau(\Omega_{cc}^+) becomes longer in the presence of dimension-7 effects and the Pauli interference Γ+int\Gamma^{\rm int}_+ even becomes negative. This implies that the subleading corrections are too large to justify the validity of the HQE. Demanding the rate Γ+int\Gamma^{\rm int}_+ to be positive for a sensible HQE, we conjecture that the Ωc0\Omega_c^0 lifetime lies in the range of (0.751.80)×1013s(0.75\sim 1.80)\times 10^{-13}s. The lifetime hierarchy pattern is τ(Ξcc++)>τ(Ωcc+)>τ(Ξcc+)\tau(\Xi_{cc}^{++})>\tau(\Omega_{cc}^+)>\tau(\Xi_{cc}^+) and the lifetime ratio τ(Ξcc++)/τ(Ξcc+)\tau(\Xi_{cc}^{++})/\tau(\Xi_{cc}^+) is predicted to be of order 6.7.

Keywords

Cite

@article{arxiv.1809.08102,
  title  = {Lifetimes of Doubly Charmed Baryons},
  author = {Hai-Yang Cheng and Yan-Liang Shi},
  journal= {arXiv preprint arXiv:1809.08102},
  year   = {2018}
}

Comments

17 pages, 1 figure, version to appear in PRD. arXiv admin note: text overlap with arXiv:1807.00916