A unified meson-baryon potential
arXiv:hep-ph/0412176 · doi:10.1103/PhysRevC.66.055202
Abstract
We study the spectra of mesons and baryons, composed of light quarks, in the framework of a semirelativistic potential model including instanton induced forces. We show how a simple modification of the instanton interaction in the baryon sector allows a good description of the meson and the baryon spectra using an interaction characterized by a unique set of parameters.
7 figures
References in corpus (6)
- The light baryon spectrum in a relativistic quark model with instanton-induced quark forces I. The non-strange baryon spectrum and ground-states
- The light baryon spectrum in a relativistic quark model with instanton-induced quark forces II. The strange baryon spectrum
- Relativistic quark models of baryons with instantaneous forces
- Bohr-Sommerfeld quantization and meson spectroscopy
- Light Meson Spectra and Instanton Induced Forces
- Baryon spectra with instanton induced forces
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- Upper limit on the number of bound states of the spinless Salpeter equation
- Upper limit on the critical strength of central potentials in relativistic quantum mechanics
- Effect of relativistic kinematics on the stability of multiquarks
- An introduction to the quark model
- Revisiting the assignment of meson nonet