QCD Chiral restoration at finite under the Magnetic field: Studies based on the instanton vacuum model
arXiv:1109.1096 · doi:10.1007/s00601-012-0352-z
Abstract
We investigate the chiral restoration at finite temperature under the strong external magnetic field of the SU(2) light-flavor QCD matter. We employ the instanton-liquid QCD vacuum configuration accompanied with the linear Schwinger method for inducing the magnetic field. The Harrington-Shepard caloron solution is used to modify the instanton parameters, i.e. the average instanton size and inter-instanton distance , as functions of . In addition, we include the meson-loop corrections (MLC) as the large- corrections because they are critical for reproducing the universal chiral restoration pattern. We present the numerical results for the constituent-quark mass as well as chiral condensate which signal the spontaneous breakdown of chiral-symmetry (SBS), as functions of and . Besides we find that the changes for the and due to the magnetic field is relatively small, in comparison to those caused by the finite effect.
4 pages, 1 table, 6figs. arXiv admin note: significant text overlap with arXiv:1103.6057
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