Effect of Quark Dimension Reduction on Goldstone Mode in Magnetic Field
arXiv:1702.04868 · doi:10.1103/PhysRevD.96.034004
Abstract
The meson static properties are investigated in Pauli-Villars regularized Nambu--Jona-Lasinio model in strong magnetic field. The quark dimension reduction leads to not only the magnetic catalysis effect on chiral symmetry restoration but also a sudden jump of the mass of the Goldstone mode at the Mott transition temperature.
5 pages, 4 figures
References in corpus (7)
- Quantum field theory in a magnetic field: From quantum chromodynamics to graphene and Dirac semimetals
- Equation of State of a Dense and Magnetized Fermion System
- Quark matter under strong magnetic fields in the Nambu--Jona-Lasinio Model
- Inverse magnetic catalysis in dense holographic matter
- The Importance of Asymptotic Freedom for the Pseudocritical Temperature in Magnetized Quark Matter
- Chiral transition with magnetic fields
- Strange quark chiral phase transition in hot 2+1-flavor magnetized quark matter
Cited by in corpus (32)
- Neutral meson properties in hot and magnetized quark matter: a new magnetic field independent regularization scheme applied to NJL-type model
- Neutral and charged (pseduo)scalar mesons and diquarks under magnetic fields
- Pions in magnetic field at finite temperature
- Effect of anomalous magnetic moment of quarks on the phase structure and mesonic properties in the NJL model
- Charged pion masses under strong magnetic fields in the NJL model
- Meson properties in magnetized quark matter
- Neutral and charged pion properties under strong magnetic fields in the NJL model
- Inverse catalysis effect of quark anomalous magnetic moment to chiral restoration and deconfinement phase transitions
- Neutral meson properties under an external magnetic field in nonlocal chiral quark models
- Weak decay of magnetized pions
- Effects of quark anomalous magnetic moment on the thermodynamical properties and mesonic excitations of magnetized hot and dense matter in PNJL model
- The pole and screening masses of neutral pion in hot and magnetized medium: a comprehensive study in the Nambu--Jona-Lasinio model
- Thermo-magnetic spectral properties of neutral mesons in vector and axial-vector channels using NJL model
- Impacts of (inverse) magnetic catalysis on screening masses of neutral pions and sigma mesons in hot and magnetized quark matter
- Light pseudo-scalar meson masses under strong magnetic fields within the SU(3) Nambu-Jona-Lasinio model
- Mass spectra of neutral mesons at finite magnetic field, temperature and baryon chemical potential
- Charged pseudoscalar and vector meson masses under strong magnetic fields in an extended NJL model
- Neutral pseudoscalar and vector meson masses under strong magnetic fields in an extended NJL model: mixing effects
- Pion-to-vacuum vector and axial vector amplitudes and weak decays of pions in a magnetic field
- Properties of magnetized neutral pions at zero and finite temperature in nonlocal chiral quark models
- Masses of magnetized pseudoscalar and vector mesons in an extended NJL model: the role of axial vector mesons
- Charged meson masses under strong magnetic fields: gauge invariance and Schwinger phases
- Magnetized pole-mass of neutral meson within full RPA evaluation
- Diquark and nucleons under strong magnetic fields in the NJL model
- Pion superfluid phase transition under external magnetic field including inverse magnetic catalysis effect
- Magnetic field effect on pion superfluid
- Strongly interacting matter in extreme magnetic fields
- Mass Spectra and Decay of Mesons under Strong External Magnetic Field
- Spectral function for pions in magnetic field
- Gauge independence of pion masses in a magnetic field within the Nambu--Jona-Lasinio model
- decay under strong magnetic fields in the NJL model
- Light mesons around critical end points in space