Highly excited negative parity baryons in the expansion
arXiv:1205.5207 · doi:10.1103/PhysRevD.85.116003
Abstract
The masses of experimentally known highly excited baryons of negative parity supposed to belong to the multiplets ( = 1,2,3) of the band are calculated in the expansion method to order by using a procedure which allows to considerably reduce the number of linearly independent operators entering the mass formula. The numerical fits to present data show that the coefficients encoding the QCD dynamics have large, comparable values, for the flavor and spin operators. It implies that these operators contribute dominantly to the flavor-spin SU(6) symmetry breaking, like for the multiplet of the band.
15 pages, accepted for publication in Phys.Rev.D
References in corpus (9)
- Properties of baryon resonances from a multichannel partial wave analysis
- Masses of Baryons in the Expansion
- Nucleon resonances in the fourth resonance region
- Baryonic mass formula in large QCD versus quark model
- New look at the baryon multiplet in the expansion
- The permutation group S_N and large Nc excited baryons
- Baryon Regge Trajectories in the Light of the Expansion
- SU(6) baryon multiplet in the expansion
- The wave function of baryons in the expansion
Cited by in corpus (7)
- Progress Toward Understanding Baryon Resonances
- Baryon resonances in large QCD
- Baryon spin-flavor structure from an analysis of lattice QCD results of the baryon spectrum
- Updated expansion analysis of and baryon multiplets
- baryons in large QCD revisited: The effect on Regge trajectories
- Negative parity baryons in the expansion: the three towers of states revisited
- SU(3) flavor symmetry breaking in large excited hyperons