Temperature Dependence of the Effective Bag Constant and the Radius of a Nucleon in the Global Color Symmetry Model of QCD
arXiv:1009.3314 · doi:10.1103/PhysRevC.82.025206
Abstract
We study the temperature dependence of the effective bag constant, the mass, and the radius of a nucleon in the formalism of the simple global color symmetry model in the Dyson-Schwinger equation approach of QCD with a Gaussian-type effective gluon propagator. We obtain that, as the temperature is lower than a critical value, the effective bag constant and the mass decrease and the radius increases with the temperature increasing. As the critical temperature is reached, the effective bag constant and the mass vanish and the radius tends to infinity. At the same time, the chiral quark condensate disappears. These phenomena indicate that the deconfinement and the chiral symmetry restoration phase transitions can take place at high temperature. The dependence of the critical temperature on the interaction strength parameter in the effective gluon propagator of the approach is given.
10 pages, 9 figures
References in corpus (19)
- Sketching the Bethe-Salpeter kernel
- Susceptibilities and speed of sound from PNJL model
- Hadron Properties and Dyson-Schwinger Equations
- Dressed-quark anomalous magnetic moments
- 2+1 Flavor Polyakov--Nambu--Jona-Lasinio Model at Finite Temperature and Nonzero Chemical Potential
- Scaling behavior and positivity violation of the gluon propagator in full QCD
- Thermodynamics of the PNJL model with nonzero baryon and isospin chemical potentials
- Three flavor Nambu-Jona Lasinio model with Polyakov loop and competition with nuclear matter
- Chiral and deconfinement transition from Dyson-Schwinger equations
- Thermal Casimir effect in ideal metal rectangular boxes
- Dynamical chiral symmetry breaking and a critical mass
- Fluctuations and Correlations of Conserved Charges in QCD at Finite Temperature with Effective Models
- condensate for light quarks beyond the chiral limit
- Chemical potential and the gap equation
- Dyson-Schwinger Equation and Quantum Phase Transitions in Massless QCD
- Transverse Symmetry Transformations and the Quark-Gluon Vertex Function in QCD
- Derivative expansion for the boundary interaction terms in the Casimir effect: generalized -potentials
- Landau gauge condensates from global color model
- Casimir bag energy in the stochastic approximation to the pure QCD vacuum
Cited by in corpus (5)
- Quark spectral density and a strongly-coupled QGP
- Baryon and meson screening masses
- Revisiting the Equation of State of Hybrid Stars in the Dyson-Schwinger Equation Approach to QCD
- Unified analysis of screening masses for vector and axial-vector mesons and their diquark partners in the Contact Interaction model
- Prospects for compact hexaquarks under the limitation imposed by quark confinement