The quark-meson coupling model, based on a mean-field description of nonoverlapping nucleon bags bound by the self-consistent exchange of σ, ω, and ρ mesons, is extended to investigate the change of hadron properties in finite nuclei. Relativistic Hartree equations for spherical nuclei have been derived from a relativistic quark model of the structure of bound nucleons and mesons. Using this unified, self-consistent description of both infinite nuclear matter and finite nuclei, we investigate the properties of some closed-shell nuclei and study the changes in the hadron masses of the nonstrange vector mesons, the hyperons, and the nucleon in those nuclei. We find a new, simple scaling relation for the changes of the hadron masses, which can...
We review the effect of hadron structure changes in a nuclear medium using the quark-meson coupling ...
A relativistic mean field parameter set is constructed aiming to describe the energy density of nucl...
Copyright © 2004 Elsevier B.V. All rights reserved. Printed in U.S.A. Submitted to Cornell Universit...
Using a self-consistent, Hartree description for both infinite nuclear matter and finite nuclei base...
We study nuclear matter and finite nuclei in terms of the quark mean field (QMF) model, in which we ...
The formalism of the quark-meson coupling model, based on a mean field description of non-overlappin...
Using a self-consistent quark model for nuclear matter we investigate variations of the masses of th...
We describe the development of a theoretical description of the structure of finite nuclei based on ...
Three versions of the quark-meson coupling (QMC) model are applied to describe properties of nuclear...
We report the first use of the effective quark-meson coupling (QMC) energy density functional (EDF),...
We investigate the variation with light quark mass of the mass of the nucleon as well as the masses ...
Available online 2 February 2018The Quark–Meson-Coupling model, which self-consistently relates the ...
International audienceThe Quark–Meson-Coupling model, which self-consistently relates the dynamics o...
Relativistic Hartree equations for spherical nuclei have been derived from a relativistic quark mode...
Properties of finite nuclei are investigated based on relativistic Hartree equations which have been...
We review the effect of hadron structure changes in a nuclear medium using the quark-meson coupling ...
A relativistic mean field parameter set is constructed aiming to describe the energy density of nucl...
Copyright © 2004 Elsevier B.V. All rights reserved. Printed in U.S.A. Submitted to Cornell Universit...
Using a self-consistent, Hartree description for both infinite nuclear matter and finite nuclei base...
We study nuclear matter and finite nuclei in terms of the quark mean field (QMF) model, in which we ...
The formalism of the quark-meson coupling model, based on a mean field description of non-overlappin...
Using a self-consistent quark model for nuclear matter we investigate variations of the masses of th...
We describe the development of a theoretical description of the structure of finite nuclei based on ...
Three versions of the quark-meson coupling (QMC) model are applied to describe properties of nuclear...
We report the first use of the effective quark-meson coupling (QMC) energy density functional (EDF),...
We investigate the variation with light quark mass of the mass of the nucleon as well as the masses ...
Available online 2 February 2018The Quark–Meson-Coupling model, which self-consistently relates the ...
International audienceThe Quark–Meson-Coupling model, which self-consistently relates the dynamics o...
Relativistic Hartree equations for spherical nuclei have been derived from a relativistic quark mode...
Properties of finite nuclei are investigated based on relativistic Hartree equations which have been...
We review the effect of hadron structure changes in a nuclear medium using the quark-meson coupling ...
A relativistic mean field parameter set is constructed aiming to describe the energy density of nucl...
Copyright © 2004 Elsevier B.V. All rights reserved. Printed in U.S.A. Submitted to Cornell Universit...