The bottom-charmed meson spectrum from a QCD approach based on Tamm--Dancoff approximation
arXiv:2007.07849 · doi:10.1103/PhysRevD.102.034002
Abstract
The bottom-charmed meson spectrum is studied in this work via an effective version of the Coulomb gauge QCD Hamiltonian. The Tamm-Dancoff approximation is employed to estimate the energies of the low-lying and radial-excited states with quantum numbers . In particular, we analyze the effects of incorporating an effective transverse hyperfine interaction and spin mixing. The Regge trajectories and hyperfine splitting of both - and -wave states are also examined. The numerical results are compared with available experimental data and theoretical predictions of other models.
28 pages, 5 figures and 6 tables
References in corpus (10)
- Measurement of the Bc meson mass in the exclusive decay Bc --> Jpsi Pi
- Observation of two excited B states and measurement of the B(2S) mass in pp collisions at 13 TeV
- Heavy quarkonium hybrids from Coulomb gauge QCD
- Mesons with Beauty and Charm: New Horizons in Spectroscopy
- Properties of new unflavored mesons below 2.4 GeV
- Observation of an excited state
- The excited bottom-charmed mesons in a nonrelativistic quark model
- spectrum and decay properties with coupled channel effects
- Light 1-+ exotics: molecular resonances
- Mass spectra and decays of ground and orbitally excited states in non relativistic quark model