Author/Authors :
D. Ebert، نويسنده , , K.G. Klimenko، نويسنده ,
Abstract :
The influence of a constant homogeneous external magnetic field H on the formation and stability of quark droplets is investigated within a simple Nambu–Jona-Lasinio model by using a thermodynamic approach. For a vanishing magnetic field stable quark droplets, which are schematically the bags of massless quarks, are allowed to exist only at G>Gbag, where G is the quark coupling constant, Gbag=1.37Gcrit, and Gcrit is the value of the coupling constant above which chiral symmetry is spontaneously broken down. On the other hand, a nonvanishing external magnetic field can induce the stability of quark droplets so that they may exist even at G
Keywords :
Nambu–Jona-Lasinio model , Quark matter stability , Chiral phase transitions , Magnetic catalysis effect
Journal title :
Nuclear physics A
Journal title :
Nuclear physics A