Form factors of transition within the light-front quark models
arXiv:2112.08016 · doi:10.1140/epjc/s10052-022-10391-0
Abstract
In this paper, we calculate the vector, axial-vector and tensor form factors of transition within the standard light-front~(SLF) and covariant light-front~(CLF) quark models~(QMs). The self-consistency and Lorentz covariance of CLF QM with two types of correspondence schemes are investigated. The zero-mode effects and the spurious -dependent contributions to the form factors of transition are analyzed. Employing a self-consistent CLF QM, we present our numerical predictions for the vector, axial-vector and tensor form factors of ~() induced , , , transitions and induced , , , transitions. Finally, in order to test the obtained form factors, the semileptonic ~() and decays are studied. It is expected that our results for the form factors of transition can be applied further to the relevant phenomenological studies of meson decays.
41 pages, 7figures. arXiv admin note: text overlap with arXiv:1908.04677
References in corpus (10)
- Decay constants and radiative decays of heavy mesons in light-front quark model
- Charmless Hadronic B Decays into a Tensor Meson
- B to tensor meson form factors in the perturbative QCD approach
- Semileptonic and radiative decays of the B_c meson in light-front quark model
- to P-Wave Charmonia Transitions in Covariant Light-Front Approach
- B to Light Tensor Meson Form Factors Derived from Light-Cone Sum Rules
- Revisiting the form factors of transition within the light-front quark models
- Radiative and Semileptonic B Decays Involving the Tensor Meson K_2^*(1430) in the Standard Model and Beyond
- Affleck-Dine Baryogenesis with Observable Neutron-Anti-Neutron Oscillation
- Study of Quasi-two-body Decays in Perturbative QCD Approach