In pursuit of sketching the effective magnetized QCD phase diagram, we find conditions on the critical coupling for chiral symmetry breaking in the Nambu–Jona-Lasinio model in a nontrivial thermo-magnetic environment. Critical values for the plasma parameters, namely, temperature and magnetic field strength for this to happen are hence found in the mean field limit. The magnetized phase diagram is drawn from the criticality condition for different models of the effective coupling describing the inverse magnetic catalysis effect
The QCD phase-diagram is studied, at finite magnetic field. Our calculations are based on the QCD ef...
The breaking of chiral symmetry of light quarks at zero temperature in presence of strong quantizing...
Both in heavy-ion collisions and in magnetars very strong magnetic fields are produced, which has an...
We review the main features of the QCD phase diagram description, at finite temperature, baryon dens...
In this review, we summarize recent progress on the possible phases of quantum chromodynamics (QCD) ...
Understanding the nature of the chiral and deconfinement phase transitions, the location of the crit...
In this study, we investigate the Nambu–Jona-Lasinio (NJL) model at finite temperature and finite de...
Understanding the nature of the chiral and deconfinement phase transitions, the location of the crit...
AbstractIn this study, we investigate the Nambu–Jona-Lasinio (NJL) model at finite temperature and f...
AbstractWe study the effect of an external magnetic field on the chiral phase transition in the theo...
In this article we study chiral symmetry breaking for quark matter in a magnetic background, B , at ...
We investigate the combined finite-size and thermo-magnetic effects on the properties of the quark m...
We investigate the combined finite-size and thermo-magnetic effects on the properties of the quark m...
AbstractIn this article we study chiral symmetry breaking for quark matter in a magnetic background,...
The QCD phase-diagram is studied, at finite magnetic field. Our calculations are based on the QCD ef...
The QCD phase-diagram is studied, at finite magnetic field. Our calculations are based on the QCD ef...
The breaking of chiral symmetry of light quarks at zero temperature in presence of strong quantizing...
Both in heavy-ion collisions and in magnetars very strong magnetic fields are produced, which has an...
We review the main features of the QCD phase diagram description, at finite temperature, baryon dens...
In this review, we summarize recent progress on the possible phases of quantum chromodynamics (QCD) ...
Understanding the nature of the chiral and deconfinement phase transitions, the location of the crit...
In this study, we investigate the Nambu–Jona-Lasinio (NJL) model at finite temperature and finite de...
Understanding the nature of the chiral and deconfinement phase transitions, the location of the crit...
AbstractIn this study, we investigate the Nambu–Jona-Lasinio (NJL) model at finite temperature and f...
AbstractWe study the effect of an external magnetic field on the chiral phase transition in the theo...
In this article we study chiral symmetry breaking for quark matter in a magnetic background, B , at ...
We investigate the combined finite-size and thermo-magnetic effects on the properties of the quark m...
We investigate the combined finite-size and thermo-magnetic effects on the properties of the quark m...
AbstractIn this article we study chiral symmetry breaking for quark matter in a magnetic background,...
The QCD phase-diagram is studied, at finite magnetic field. Our calculations are based on the QCD ef...
The QCD phase-diagram is studied, at finite magnetic field. Our calculations are based on the QCD ef...
The breaking of chiral symmetry of light quarks at zero temperature in presence of strong quantizing...
Both in heavy-ion collisions and in magnetars very strong magnetic fields are produced, which has an...