In the NJL model, rho meson masses for different charge and spin states increase or decrease with magnetic field at zero temperature, decrease with temperature at fixed B, approach constituent quark masses at high T, and exhibit degeneracies under combined finite B and T.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
3
Pith papers citing it
verdicts
UNVERDICTED 3representative citing papers
Non-extensive NJL calculations show that the critical temperature Tc decreases with the Tsallis parameter q and that chiral chemical potential can switch the magnetic field effect from catalysis to inverse catalysis.
In the PNJL model, intermediate magnetic fields allow two or more first-order phase transitions in the light quark sector and produce entropy oscillations with rising baryon density.
citing papers explorer
-
Non-extensive NJL model study of QCD phase structure with chiral imbalance and strong magnetic fields
Non-extensive NJL calculations show that the critical temperature Tc decreases with the Tsallis parameter q and that chiral chemical potential can switch the magnetic field effect from catalysis to inverse catalysis.