Spectra and Decay Properties of Higher Lying Meson States
arXiv:2405.12691 · doi:10.1142/S0217751X2450101X
Abstract
In this work, the spectra and decay properties of mesons () have been investigated using a non-relativistic potential model incorporating corrections from LQCD. The non-relativistic Schrodinger wave equation is solved numerically using the Matrix Numerov Method. Using the obtained masses and wave functions, decay widths, lifetime, branching ratios and radiative decay widths are computed for the system. We compare the obtained results with the experimental data and with other theoretical models.
13 pages, 7 images
References in corpus (14)
- Higher Charmonia and X,Y,Z states with Screened Potential
- Potential model calculations and predictions for heavy quarkonium
- Observation of two excited B states and measurement of the B(2S) mass in pp collisions at 13 TeV
- Dynamic Properties of Charmonium
- The Cornell Potential from General Geometries in AdS / QCD
- The excited bottom-charmed mesons in a nonrelativistic quark model
- spectrum and decay properties with coupled channel effects
- Quark-antiquark potential to order 1/m and heavy quark masses
- Radiative decays of Bc mesons in a Bethe-Salpeter model
- Towards the discovery of novel states: radiative and hadronic transitions
- Spectroscopic survey of higher-lying states of meson family
- The bottom-charmed meson spectrum from a QCD approach based on Tamm--Dancoff approximation
- Charmonium potentials: Matching perturbative and lattice QCD
- The Decay constants of and