English

Magnetic catalysis and anisotropic confinement in QCD

High Energy Physics - Phenomenology 2009-11-07 v3 High Energy Physics - Lattice High Energy Physics - Theory Nuclear Theory

Abstract

The expressions for dynamical masses of quarks in the chiral limit in QCD in a strong magnetic field are obtained. A low energy effective action for the corresponding Nambu-Goldstone bosons is derived and the values of their decay constants as well as the velocities are calculated. The existence of a threshold value of the number of colors NcthrN^{thr}_c, dividing the theories with essentially different dynamics, is established. For the number of colors NcNcthrN_c \ll N^{thr}_c, an anisotropic dynamics of confinement with the confinement scale much less than ΛQCD\Lambda_{QCD} and a rich spectrum of light glueballs is realized. For NcN_c of order NcthrN^{thr}_c or larger, a conventional confinement dynamics takes place. It is found that the threshold value NcthrN^{thr}_c grows rapidly with the magnetic field [Ncthr100N^{thr}_c \gtrsim 100 for eB(1GeV)2|eB| \gtrsim (1{GeV})^2]. In contrast to QCD with a nonzero baryon density, there are no principal obstacles for checking these results and predictions in lattice computer simulations.

Keywords

Cite

@article{arxiv.hep-ph/0205348,
  title  = {Magnetic catalysis and anisotropic confinement in QCD},
  author = {V. A. Miransky and I. A. Shovkovy},
  journal= {arXiv preprint arXiv:hep-ph/0205348},
  year   = {2009}
}

Comments

10 pages, 1 figure. REVTeX. Minor correction. To appear in Phys. Rev. D