Mass spectra of neutral mesons at finite magnetic field, temperature and baryon chemical potential
arXiv:2212.04778 · doi:10.1103/PhysRevD.107.074018
Abstract
The mass spectra of neutral mesons on temperature-quark chemical potential plane in the presence of a constant magnetic field is investigated in the NJL model. As a Goldstone boson of chiral symmetry breaking, the mass of meson increases with temperature and/or quark chemical potential, and we observe two kinds of mass jumps of meson in media, which is induced by the mass jump of constituent quarks and the magnetic field, respectively. Due to the breaking of isospin symmetry between and quarks in magnetic fields, the mixing of mesons occurs and this leads to rich structures of their mass spectra. For instance, mass is influenced by the strange quark. There appear the change of increase ratio of mass at high and vanishing and the mass jump crossing over the threshold of two times of strange quark mass at finite and . The mass ordering of mesons varies in media, due to their mass jumps, which are induced by the mass jump of constituent quarks or the magnetic field.
8 pages, 4 figures
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- Functional renormalization group study of neutral and charged pion under magnetic fields in the quark-meson model
- Correlations and fluctuations in a magnetized PNJL model with and without inverse magnetic catalysis effect
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