Quadrupole moments of low lying baryons with spin 1/2^+, spin 3/2^+, and spin 3/2^+ \to 1/2^+ transitions
arXiv:1302.4167 · doi:10.1007/s12043-012-0479-y
Abstract
The chiral constituent quark model (\chiCQM) with general parameterization (GP) method has been formulated to calculate the quadrupole moments of the spin 3/2^+ decuplet baryons and spin 3/2^+ \to 1/2^+ transitions. The implications of such a model have been investigated in detail for the effects of symmetry breaking and GP parameters pertaining to the two- and three-quark contributions. It is found that the \chiCQM is successful in giving a quantitative and qualitative description of the quadrupole moments.
Published version. arXiv admin note: text overlap with arXiv:0712.4270 by other authors
References in corpus (5)
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Cited by in corpus (4)
- Axial-vector form factors for the low lying octet baryons in the chiral quark constituent model
- Quark flavor distribution functions for the octet baryons in the chiral quark constituent model
- Electromagnetic and Axial-Vector Form Factors of the Quarks and Nucleon
- Sea contribution to the charge radii and quadrupole moment of baryons