4.7 Article

Semileptonic and nonleptonic weak decays of Λb0

Journal

PHYSICAL REVIEW D
Volume 99, Issue 5, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.99.054020

Keywords

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Funding

  1. National Natural Science Foundation of China (NNSFC) [11175091, 11375128]

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The recent experimental developments require a more precise theoretical study of weak decays of heavy baryon Lambda(0)(b). In this work, we provide an updated and systematic analysis of both the semi-leptonic and nonleptonic decays of Lambda(0)(b), into baryons Lambda(+)(c), Lambda, p, and n. The diquark approximation is adopted so that the methods developed in the B meson system can be extended into the baryon system. The baryon-to-baryon transition form factors are calculated in the framework of a covariant light-front quark model. The form factors f(3), g(3) can be extracted and are found to be non-negligible. The semileptonic processes of Lambda(0 )(b)-> Lambda(+)(c)(P)l(-)(nu) over bar (l) are calculated and the results are consistent with the experiment. We study the nonleptonic processes within the QCD factorization approach. The decay amplitudes are calculated at the next-toleading order in strong coupling constant alpha(s). We calculate the nonleptonic decays of Lambda(0)(b) into a baryon and a s-wave meson (pseudoscalar or vector) including 44 processes in total. The branching ratios and direct CP asymmetries are predicted. The numerical results are compared to the experimental data and those in the other theoretical approaches. Our results show validity of the diquark approximation and application of QCD factorization approach into the heavy baryon system.

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