Is nucleon spin structure inconsistent with constituent quark model?
arXiv:hep-ph/9802425 · doi:10.1103/PhysRevD.58.114032
Abstract
A qualitative QCD analysis and a quantitative model calculation are given to show that the constituent quark model remains a good approximation even with the nucleon spin structure revealed in polarized deep inelastic scattering taking into account.
12 pages Revtex, 1 figure
References in corpus (4)
Cited by in corpus (18)
- Light-Cone Representation of the Spin and Orbital Angular Momentum of Relativistic Composite Systems
- The Spin Structure of the Nucleon
- Possible pentaquarks with heavy quarks
- The structure of pentaquarks in the chiral quark model
- Understanding the proton's spin structure
- Quark scalar, axial, and pseudoscalar charges in the Schwinger-Dyson formalism
- Spin Studies of Nucleons in a Statistical Model
- Orbital Angular Momentum in the Nucleon
- QCD quark cyclobutadiene and light tetraquark spectrum
- Understanding penta quark with various quark models
- Importance of Sea Contribution to Nucleons
- Tensor charge and anomalous magnetic moment correlation
- Strange quark polarization of the nucleon: A parameter-independent prediction of the chiral potential model
- The contributions of components to the axial charges of proton and its resonances
- Systematic study of pentaquark states: configuration
- Correct use of the Gordon decomposition in the calculation of nucleon magnetic dipole moments
- The quark orbital angular momentum of ground state octet baryons
- Problems related to gauge invariance and momentum, spin decomposition in nucleon structure study