Published March 3, 2014 | Version v1
Journal article

Chiral dynamics in a magnetic field from the functional renormalization group

  • 1. Theoretical Research Division, Nishina Center, RIKEN,Saitama 351-0198 (Japan)
  • 2. Quantum Hadron Physics Laboratory, RIKEN, Saitama 351-0198 (Japan)

Description

We investigate the quark-meson model in a magnetic field using the functional renormalization group equation beyond the local-potential approximation. Our truncation of the effective action involves anisotropic wave function renormalization for mesons, which allows us to investigate how the magnetic field distorts the propagation of neutral mesons. Solving the flow equation numerically, we find that the transverse velocity of mesons decreases with the magnetic field at all temperatures, which is most prominent at zero temperature. The meson screening masses and the pion decay constants are also computed. The constituent quark mass is found to increase with magnetic field at all temperatures, resulting in the crossover temperature that increases monotonically with the magnetic field. This tendency is consistent with most model calculations but not with the lattice simulation performed at the physical point. Our work suggests that the strong anisotropy of meson propagation may not be the fundamental origin of the inverse magnetic catalysis

Availability note (English)

Available from http://dx.doi.org/10.1007/JHEP03(2014)009; Available from http://repo.scoap3.org/record/1519

Additional details

Publishing Information

Journal Title
Journal of High Energy Physics (Online)
Journal Volume
2014
Journal Issue
03
Journal Page Range
p. 9
ISSN
1029-8479

Optional Information

Copyright
Copyright (c) OPEN ACCESS, © The Authors
Notes
PUBLISHER-ID: JHEP03(2014)009; OAI: oai:repo.scoap3.org:1519
Funding organization
SCOAP3, CERN, Geneva (Switzerland)