Strange baryon spectroscopy in the relativistic quark model
arXiv:1507.04530 · doi:10.1103/PhysRevD.92.054005
Abstract
Mass spectra of strange baryons are calculated in the framework of the relativistic quark model based on the quasipotential approach. Baryons are treated as the relativistic quark-diquark bound systems. It is assumed that two quarks with equal constituent masses form a diquark. The diquark excitations and its internal structure are consistently taken into account. Calculations are performed up to rather high orbital and radial excitations of strange baryons. On this basis the Regge trajectories are constructed. The obtained results are compared with available experimental data and previous predictions. It is found that all masses of the 4- and 3-star, as well as most of the 2- and 1-star states of strange baryons with established quantum numbers are well reproduced. The developed relativistic quark-diquark model predicts less excited states than three-quark models of strange baryons.
21 pages, 3 figures
References in corpus (10)
- Heavy quarkonium: progress, puzzles, and opportunities
- Spectroscopy and Regge trajectories of heavy baryons in the relativistic quark-diquark picture
- The Z(4430) and a New Paradigm for Spin Interactions in Tetraquarks
- Mass spectra and Regge trajectories of light mesons in the relativistic quark model
- A Theory of Scalar Mesons
- Masses of excited heavy baryons in the relativistic quark-diquark picture
- Excited heavy tetraquarks with hidden charm
- Some mass relations for mesons and baryons in Regge phenomenology
- Semileptonic decays of heavy baryons in the relativistic quark model
- Quark-Model Identification of Baryon Ground and Resonant States
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