The S- and P-wave low-lying baryons in the chiral quark model
arXiv:1709.09315 · doi:10.1007/s00601-018-1433-4
Abstract
The , , and states of light baryons are investigated within the chiral quark model, paying particular attention to the well-known order reverse problem of and states. Besides a nonperturbative linear-screened confining interaction and a perturbative one-gluon exchange between quarks, we incorporate the Goldstone-boson exchanges taking into account not only the full octet of pseudoscalar mesons but also the scalar one. The scalar meson exchange potential simulates the higher order multi-pion exchange terms that appear in the chiral Lagrangian and its omission has been already admitted as a deficiency of the original model in describing, for instance, the splitting. The numerical approach to the three body bound state problem is the so-called Gaußian expansion method, which is able to get a precision as good as Faddeev calculations. With a set of parameters fixed to different hadron and hadron-hadron observables, we find that the chiral potential could play an important role towards the issue on the mass order reverse problem. We extend our calculation to the and sectors (with representing a light -, -, or -quark and denoting the charm quark or the bottom one) in which many new states have been recently observed. Some tentative assignments are done attending to the agreement between theoretical and experimental masses; however, we admit that other sources of information are needed in order to make strong claims about the nature of these states.
22 pages, 6 tables, 1 Figure; version near the one published by Few-Body Phys
References in corpus (22)
- Heavy Baryons in a Quark Model
- Baryons as relativistic three-quark bound states
- Constituent quark model study of the meson spectra
- Charmed bottom baryon spectroscopy from lattice QCD
- Masses of excited heavy baryons in the relativistic quark-diquark picture
- Quark-model study of few-baryon systems
- Towards an understanding of heavy baryon spectroscopy
- Bottom Baryons
- Pion-nucleon scattering in the Roper channel from lattice QCD
- On light baryons and their excitations
- Electroexcitation of the Roper resonance in the relativistic quark models
- Hamiltonian effective field theory study of the resonance in lattice QCD
- Dynamical study of mesons
- Canonical description of the new LHCb resonances
- A novel analysis method for excited states in lattice QCD - the nucleon case
- Analysis of and with QCD sum rules
- The role of components in the nucleon and the N(1440) resonance
- Parity partners in the baryon resonance spectrum
- Charmed-strange Meson Spectrum: Old and New Problems
- Threshold effects in P-wave bottom-strange mesons
- Electroproduction of the Roper resonance on the proton: the role of the three-quark core and the molecular N-sigma component
- Baryons and Chiral Symmetry
Cited by in corpus (31)
- Chiral perturbation theory for heavy hadrons and chiral effective field theory for heavy hadronic molecules
- Diquark Correlations in Hadron Physics: Origin, Impact and Evidence
- Tetra- and penta-quark structures in the constituent quark model
- Doubly-heavy tetraquarks
- Masses of ground-state mesons and baryons, including those with heavy quarks
- in a chiral constituent quark model
- Triply-heavy baryons in a constituent quark model
- Hidden-Bottom Pentaquarks
- The tetraquarks in the chiral quark model
- Spectrum and structure of octet and decuplet baryons and their positive-parity excitations
- tetraquarks in the chiral quark model
- Spectroscopic Study of Strangeness=-3 Baryon
- Possible interpretation of the newly observed states
- Triple-charm molecular states composed of and
- Toward establishing the low-lying -wave states
- Can be explained as a molecular state?
- The newly observed : A good candidate for a -wave charmed baryon
- Systematic analysis of strange single heavy baryons and
- Observed spectrum and meson-baryon molecular states
- A Study of Excited States in Hypercentral Constituent Quark Model via Artificial Neural Network
- Refining radiative decay studies in singly heavy baryons
- New state as a bottom baryon
- Heavy baryons in the relativized quark model with chromodynamics
- Bottomonium-like tetraquarks in a chiral quark model
- Role of chiral symmetry in the nucleon excitation spectrum
- Decay widths and mass spectra of single bottom baryons
- Heavy quark dominance in orbital excitation of singly and doubly heavy baryons
- Investigation of pentaquarks in a chiral quark model
- Proper constituent gluon mass as the final piece to construct hybrid mesons
- Spectroscopic properties of -wave singly bottom baryons
- Analysis of the , , and with QCD sum rules