Study of doubly heavy baryon lifetimes
Hai-Yang Cheng, Chia-Wei Liu

TL;DR
This paper analyzes the lifetimes and decay widths of doubly heavy baryons using heavy quark expansion, including higher-order corrections and nonperturbative effects, to predict lifetime hierarchies and decay characteristics.
Contribution
It provides the first detailed lifetime predictions for doubly heavy baryons incorporating next-to-leading-order corrections and nonperturbative matrix elements in a bag model.
Findings
Predicted lifetime hierarchy for doubly charmed baryons: τ(Ξcc++) > τ(Ωcc+) > τ(Ξcc+)
Predicted lifetime hierarchy for doubly bottom baryons: τ(Ωbb−) ≈ τ(Ξbb−) > τ(Ξbb0)
W-exchange effects are crucial for lifetime splittings and decay mechanisms.
Abstract
We study the lifetimes and inclusive semileptonic decay widths of doubly heavy baryons within the framework of heavy quark expansion. Our analysis includes next-to-leading-order corrections to the dimension-3, -5, and -6 operators, together with the leading dimension-7 contributions, while the nonperturbative matrix elements are evaluated in a bag model with translationally improved baryon wave functions. We obtain and , where the uncertainties here arise from the heavy quark pole masses and the hadronic scale adopted in the quark model. Hence, the lifetime hierarchy patterns are…
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