Lepton flavor universality can be tested in the semileptonic decays Lambda(b)->Lambda((*))(c), Lambda((*))(c) where Lambda((*))(c) denotes either the ground state Lambda(c) (2286) (with J(P) = 1/2(+)) or its orbital excitations Lambda(c) (2595) (with J(P) = 1/2) and Lambda(c) (2625) (with J(P) = 3/2(-)). We calculate the differential decay rates as well as the branching fractions of these decays for both tauonic and muonic modes with form factors obtained from a covariant confined quark model previously developed by us. We present results for the rate ratios of the tauonic and muonic modes which provide important tests of lepton flavor universality in forthcoming experiments.
Analyzing lepton flavor universality in the decays Lambda(b) -> Lambda((*))(c) (1 +/-/2, 3-/2) + l(nu)over-barl / Gutsche, Thomas; Ivanov, Mikhail A.; Koerner, ; and Lyubovitskij, Juergen G.; Valery, E.; Santorelli, Pietro; Tran, Chien-Thang. - In: PHYSICAL REVIEW D. - ISSN 2470-0010. - 98:5(2018). [10.1103/PhysRevD.98.053003]
Analyzing lepton flavor universality in the decays Lambda(b) -> Lambda((*))(c) (1 +/-/2, 3-/2) + l(nu)over-barl
Santorelli, PietroMembro del Collaboration Group
;Chien-Thang TranMembro del Collaboration Group
2018
Abstract
Lepton flavor universality can be tested in the semileptonic decays Lambda(b)->Lambda((*))(c), Lambda((*))(c) where Lambda((*))(c) denotes either the ground state Lambda(c) (2286) (with J(P) = 1/2(+)) or its orbital excitations Lambda(c) (2595) (with J(P) = 1/2) and Lambda(c) (2625) (with J(P) = 3/2(-)). We calculate the differential decay rates as well as the branching fractions of these decays for both tauonic and muonic modes with form factors obtained from a covariant confined quark model previously developed by us. We present results for the rate ratios of the tauonic and muonic modes which provide important tests of lepton flavor universality in forthcoming experiments.File | Dimensione | Formato | |
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