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Medium modification of the nucleon axial form factor
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We study the modification of the nucleon axial form factor in nuclear matter. The internal quark substructure of the nucleon is self-consistently described by the quark meson coupling model. We find that the axial form factor of the bound nucleon is quenched considerably from that of the free nucleon. The axial vector coupling constant is reduced by roughly 10% at normal nuclear matter density and the axial form factor varies within 8% for moderate momentum transfer.
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Cited by 2 Pith papers
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Magnetic Moment of Octet Baryons in Isospin Asymmetric Magnetized Strange Matter
Combined CQMF and χCQM models show that Dirac sea effects cause scalar condensates to increase with magnetic field strength, leading to monotonic growth in effective masses of octet baryons in magnetized strange matter.
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Electroweak form factors of baryons in dense nuclear matter
Using a covariant quark model combined with the quark-meson coupling model, the authors review and extend calculations showing octet baryon electromagnetic and axial form factors are modified, generally suppressed, in...
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