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Finite Temperature Schwinger Model with Chirality Breaking Boundary Conditions

High Energy Physics - Theory 2016-09-06 v2 High Energy Physics - Phenomenology

Abstract

The NfN_f-flavour Schwinger Model on a finite space 0x1L0\leq x^1\leq L and subject to bag-type boundary-conditions at x1=0x^1=0 und x1=Lx^1=L is solved at finite temperature T=1/βT=1/\beta. The boundary conditions depend on a real parameter θ\theta and break the axial flavour symmetry. We argue that this approach is more appropriate to study the broken phases than introducing small quark masses, since all calculations can be performed analytically. In the imaginary time formalism we determine the thermal correlators for the fermion-fields and the determinant of the Dirac-operator in arbitrary background gauge-fields. We show that the boundary conditions induce a CP-odd θ\theta-term in the effective action. The chiral condensate, and in particular its T- and L- dependence, is calculated for NfN_f fermions. It is seen to depend on the order in which the two lengths β=1/T\beta=1/T and LL are sent to infinity.

Keywords

Cite

@article{arxiv.hep-th/9610241,
  title  = {Finite Temperature Schwinger Model with Chirality Breaking Boundary Conditions},
  author = {Stephan Dürr and Andreas Wipf},
  journal= {arXiv preprint arXiv:hep-th/9610241},
  year   = {2016}
}

Comments

One reference added plus one corrected, final version as to be published in Annals of Physics

R2 v1 2026-07-22T16:02:11.150Z