Charge radii and quadrupole moments of the low-lying baryons in the chiral constituent quark model (Q903863)
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scientific article; zbMATH DE number 6530730
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| English | Charge radii and quadrupole moments of the low-lying baryons in the chiral constituent quark model |
scientific article; zbMATH DE number 6530730 |
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Charge radii and quadrupole moments of the low-lying baryons in the chiral constituent quark model (English)
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15 January 2016
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Summary: The chiral constituent quark model (\(\chi\)CQM) with general parameterization method (GPM) has been formulated to calculate the charge radii of the spin \((1/2)^+\) octet and \((3/2)^+\) decuplet baryons and 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 GPM parameters pertaining to the one-, two-, and three-quark contributions. Our results are not only comparable with the latest experimental studies but also agree with other phenomenological models. It is found that the \(\chi\)CQM is successful in giving a quantitative and qualitative description of the charge radii and quadrupole moments.
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0.8685963
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0.8671485
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0.86650014
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