Confinement with Kalb - Ramond Fields

Abstract

We consider models with N U(1) gauge fields Aμn, N Kalb-Ramond fields Bμ n, an arbitrary bare action and a fixed UV cutoff . Under mild assumptions these can be obtained as effective low energy theories of SU(N+1) Yang Mills theories in the maximal abelian gauge. For a large class of bare actions they can be solved in the large N limit and exhibit confinement. The confining phase is characterized by an approximate ``low energy'' vector gauge symmetry under which the Kalb-Ramond fields Bμn transform. The same symmetry allows for a duality transformation showing that magnetic monopoles have condensed. The models allow for various mechanisms of confinement, depending on which sources for Aμn or Bμ n are switched on, but the area law for the Wilson loop is obtained in any case.

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