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Confinement, Supersymmetry Breaking and Theta Parameter Dependence in the Seiberg-Witten Model
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abstract
By using the standard perturbation theory we study the mass as well as $\theta$ parameter dependence of the Seiberg-Witten theory with $SU(2)$ gauge group, supplemented with a $N=1$ supersymmetric as well as a smaller nonsupersymmetric (e.g.) gaugino mass. Confinement persists at all values of the bare vacuum parameter $\theta_{ph}$; as it is varied there is however a phase transition at $\theta_{ph} =-\pi, \pi, 3\pi, \ldots$. At these values of $\theta_{ph}$ the vacuum is doubly degenerate and CP invariance is spontaneously broken \`a la Dashen. Due to the instanton-induced renormalization effect the low energy effective $\theta$ parameter remains small irrespectively of $\theta_{ph}$ as long as the gaugino mass is sufficiently small.
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Phase Transitions at Unusual Values of $\theta$
Using Seiberg-Witten theory plus anomaly mediation, the authors find first-order phase transitions in the theta-dependent vacuum energy at theta = pi (N_F=0), 0 and pi (N_F=1), pi/2 and 3pi/2 (N_F=2), and pi/4, 3pi/4,...
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