Beauty Hadron Spectrum in a Screened Potential Model
Abstract
The mass spectrum of beauty hadrons ( and baryons) and -diquarks are computed in a non-relativistic phenomenological potential model. The potential comprises of a short-range Coulomb potential, a screened confinement potential, and corrections predicted from lattice and pNRQCD studies. Among the spin-dependent interactions, spin-spin interaction is considered non-perturbatively, whereas spin-orbit and tensor interactions are considered perturbatively. The Matrix-Numerov method is used to numerically solve the non-relativistic Schrodinger equation to evaluate the mass spectra. We interpret as -wave bottomonium state and and as -wave bottomonium states. The mass spectrum of baryons are evaluated under the diquark-quark model. The excited masses are computed by considering various radial and orbital excitations of the diquark as well as the diquark-quark system.
Cite
@article{arxiv.2505.13987,
title = {Beauty Hadron Spectrum in a Screened Potential Model},
author = {Raghavendra Kaushal and Bhaghyesh},
journal= {arXiv preprint arXiv:2505.13987},
year = {2025}
}
Comments
16 pages, 6 figures