Phase Transitions in Softly Broken N=2 SQCD at Non-zero Theta Angle
Abstract
We investigate the behavior of softly broken N=2 SQCD at non-zero bare theta angle θ0, using superfield spurions to implement the SUSY breaking. We find a first-order phase transition as θ0 is varied from zero to 2 π, in agreement with a prediction of `t Hooft. The low-energy theta angle θeff, which determines the effective charges of dyonic excitations, has a complicated dependence on θ0 and breaking parameters.
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