Effect of anomalous magnetic moment of quarks on the phase structure and mesonic properties in the NJL model
arXiv:1907.03990 · doi:10.1103/PhysRevD.99.116025
Abstract
Employing a field dependent three-momentum cut-off regularization technique, we study the phase structure and mesonic masses using the -flavour Nambu-Jona Lasinio model at finite temperature and density in presence of arbitrary external magnetic field. This approach is then applied to incorporate the effects of the anomalous magnetic moment(AMM) of quarks on constituent quark mass and thermodynamic observables as a function of temperature/baryonic density. The critical temperature for transition from chiral symmetry broken to the restored phase is observed to decrease with the external magnetic field, which can be classified as inverse magnetic catalysis, while an opposite behaviour is realized in the case of a vanishing magnetic moment, implying magnetic catalysis. These essential features are also reflected in the phase diagram. Furthermore, the properties of the low lying scalar and neutral pseudoscalar mesons are also studied in presence of a hot and dense magnetized medium including AMM of the quarks using random phase approximation. For non-zero values of magnetic field, we notice a sudden jump in the mass of the Goldstone mode at and above the Mott transition temperature which is found to decrease substantially with the increase in magnetic field when the AMM of the quarks are taken into consideration.
Version published in Physical Review D
References in corpus (20)
- The Chiral Magnetic Effect
- The order of the quantum chromodynamics transition predicted by the standard model of particle physics
- Chiral Magnetic conductivity
- Quark matter under strong magnetic fields in the Nambu--Jona-Lasinio Model
- The QCD equation of state in background magnetic fields
- Inverse magnetic catalysis in dense holographic matter
- Mesonic correlation functions at finite temperature and density in the Nambu-Jona-Lasinio model with a Polyakov loop
- Spontaneous electromagnetic superconductivity of vacuum in strong magnetic field: evidence from the Nambu--Jona-Lasinio model
- Dressed-quark anomalous magnetic moments
- Color-flavor locked superconductor in a magnetic field
- The chiral critical point of Nf=3 QCD at finite density to the order (mu/T)^4
- Color superconducting matter in a magnetic field
- Chiral phase transition in the presence of spinodal decomposition
- mesons in strong abelian magnetic field in SU(3) lattice gauge theory
- and mesons at finite temperature and density in the NJL model with dimensional regularization
- Symmetry restoration at finite temperature with weak magnetic fields
- Improved ring potential of QED at finite temperature and in the presence of weak and strong magnetic field
- General structure of the neutral meson self-energy and its spectral properties in a hot and dense magnetized medium
- Finite momentum meson correlation functions in a QCD plasma
- Magnetic susceptibility at zero and nonzero chemical potential in QCD and QED
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- Anisotropic pressure of magnetized quark matter with anomalous magnetic moment
- Magnetic correction to the Anomalous Magnetic Moment of Electron
- Vacuum effects on the properties of nuclear matter under an external magnetic field
- Landau quantization and spin polarization of cold magnetized quark matter