With the global color symmetry model (GCM) being extended to finite chemical potential, the density dependence of the bag constant, the total energy and the radius of a nucleon, as well as the quark condensate in nuclear matter are investigated. A maximal nuclear matter density for the existence of the bag with three quarks confined within is obtained. The calculated results indicate that, before the maximal density is reached, the bag constant, the total energy of a nucleon and the quark condensate decrease gradually, and the radius of a nucleon increases, with the increasing of the nuclear matter density. Nevertheless no sudden change emerges. As the maximal nuclear matter density is reached, a phase transition from nucleons to quarks tak...
Using the quark–meson coupling (QMC) model, we study the density dependence of the quark and gluon ...
It is known now that chiral symmetry restoration requires the meson-nucleon coupling to be density d...
Hadron Spectroscopy: Tenth International Conference on Hadron Spectroscopy, Aschaffenburg (Germany),...
With the global color symmetry model (GCM) at finite chemical potential, the density dependence of t...
Making use of the global color symmetry model (GCM) at finite chemical potential and with a sophisti...
With the global color symmetry model (GCM) being extended to finite chemical potential, the density ...
With the global color symmetry mode! (GCM) being extended to finite chemical potential, the density ...
With the global color symmetry model being extended to finite chemical potential, we study the densi...
We study the temperature dependence of the effective bag constant, the mass, and the radius of a nuc...
AbstractNon-perturbative QCD vacuum effects at finite density are parametrized by means of a bag con...
Properties of nuclear matter are calculated with a quark model in the spirit of the MIT bag model.A ...
Possible variations of the quark-meson coupling (QMC) model are examined in which the bag constant d...
Non-perturbative QCD vacuum effects at finite density are parametrized by means of a bag constant B....
Quark and gluon condensates in nuclear matter are investigated in a density-dependent relativistic m...
The phase transition of chiral symmetry restoration of nuclear matter is studied in the chiral SU(3)...
Using the quark–meson coupling (QMC) model, we study the density dependence of the quark and gluon ...
It is known now that chiral symmetry restoration requires the meson-nucleon coupling to be density d...
Hadron Spectroscopy: Tenth International Conference on Hadron Spectroscopy, Aschaffenburg (Germany),...
With the global color symmetry model (GCM) at finite chemical potential, the density dependence of t...
Making use of the global color symmetry model (GCM) at finite chemical potential and with a sophisti...
With the global color symmetry model (GCM) being extended to finite chemical potential, the density ...
With the global color symmetry mode! (GCM) being extended to finite chemical potential, the density ...
With the global color symmetry model being extended to finite chemical potential, we study the densi...
We study the temperature dependence of the effective bag constant, the mass, and the radius of a nuc...
AbstractNon-perturbative QCD vacuum effects at finite density are parametrized by means of a bag con...
Properties of nuclear matter are calculated with a quark model in the spirit of the MIT bag model.A ...
Possible variations of the quark-meson coupling (QMC) model are examined in which the bag constant d...
Non-perturbative QCD vacuum effects at finite density are parametrized by means of a bag constant B....
Quark and gluon condensates in nuclear matter are investigated in a density-dependent relativistic m...
The phase transition of chiral symmetry restoration of nuclear matter is studied in the chiral SU(3)...
Using the quark–meson coupling (QMC) model, we study the density dependence of the quark and gluon ...
It is known now that chiral symmetry restoration requires the meson-nucleon coupling to be density d...
Hadron Spectroscopy: Tenth International Conference on Hadron Spectroscopy, Aschaffenburg (Germany),...