Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8194426 | Physics Letters B | 2010 | 6 Pages |
Abstract
We investigate the effect of a uniform background magnetic field on the chiral symmetry breaking in SU(2) Yang-Mills theory on the lattice. We observe that the chiral condensate grows linearly with the field strength B up to eB=3 GeV as predicted by chiral perturbation theory for full QCD. As the temperature increases the coefficient in front of the linear term gets smaller. In the magnetic field near-zero eigenmodes of the Dirac operator tend to have more regular structure with larger (compared to zero-field case) Hausdorff dimensionality. We suggest that the delocalization of near-zero eigenmodes plays a crucial role in the enhancement of the chiral symmetry breaking.
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Physical Sciences and Engineering
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Nuclear and High Energy Physics
Authors
P.V. Buividovich, M.N. Chernodub, E.V. Luschevskaya, M.I. Polikarpov,