Symmetry breaking effect on the inhomogeneous chiral transition in the magnetic field
arXiv:1511.01248 · doi:10.1103/PhysRevD.92.116009
Abstract
We study the change of the effect of the current quark mass on the inhomogeneous chiral phase in the QCD phase diagram, and discuss the property of the phase transition by the generalized Ginzburg-Landau expansion. The strong external magnetic field spreads this phase over the low chemical potential region even if the current quark mass is finite. This implies that the existence of this phase can be explored by the lattice QCD simulation.
10 pages, 9 figures
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Cited by in corpus (9)
- Thermo-magnetic effects in quark matter: Nambu--Jona-Lasinio model constrained by lattice QCD
- Fluctuations in cool quark matter and the phase diagram of Quantum Chromodynamics
- Chiral pair fluctuations for the inhomogeneous chiral transition
- A novel Dual Chiral Density Wave in nuclear matter based on a parity doublet structure
- Chiral crystallization in an external magnetic background - Chiral spiral versus Real kink crystal -
- Magnetic-Field Induced Critical Endpoint
- Spontaneous Spin Polarization due to Tensor Selfenergies in Quark Matter
- Chiral spiral induced by a strong magnetic field
- Axial anomaly and nesting in the inhomogeneous chiral phase