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S wave meson spectra from the light cone harmonic oscillator model with a consistent hyperfine interaction
Shan-Gui Zhou, Hans-Christian Pauli
We use a light cone harmonic oscillator model to study S wave meson spectra, namely the pseudoscalar and vector mesons. The model Hamiltonian is a mass squared operator consisting…
New effective interactions in RMF theory with non-linear terms and density-dependent meson-nucleon coupling
Wenhui Long, Jie Meng, Nguyen Van Giai +1
New parameter sets for the Lagrangian density in the relativistic mean field (RMF) theory, PK1 with nonlinear sigma- and omega-meson self-coupling, PK1R with nonlinear sigma-, omeg…
Meson Spectra from an Effective Light Cone QCD-Inspired Model
Shan-Gui Zhou
I present some recent applications of a light cone QCD-inspired model with the mass squared operator consisting of a harmonic oscillator potential as confinement in the meson spect…
Ds(2317): a P state from the light cone harmonic oscillator model?
Shan-Gui Zhou, Hans-Christian Pauli
We show that the mass of the recently found meson, Ds(2317) could be reproduced by an effective light cone Hamiltonian model with a harmonic oscillator potential as confinement --…
Spin symmetry in the anti-nucleon spectrum
Shan-Gui Zhou, Jie Meng, P. Ring
We discuss spin and pseudo-spin symmetry in the spectrum of single nucleons and single anti-nucleons in a nucleus. As an example we use relativistic mean field theory to investigat…
Spherical Relativistic Hartree theory in a Woods-Saxon basis
Shan-Gui Zhou, Jie Meng, Peter Ring
The Woods-Saxon basis has been suggested to replace the widely used harmonic oscillator basis for solving the relativistic mean field (RMF) theory in order to generalize it to stud…