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On the one-loop effective potential in nonlocal supersymmetric theories
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On the one-loop effective potential in nonlocal supersymmetric theories
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Within the superfield approach, we consider the nonlocal generalization of the Wess-Zumino model and calculate the one-loop low-energy contributions to the effective action. Four different nonlocal models are considered, among which only the first model does not reduce to the standard Wess-Zumino model when we take the parameter of nonlocality of the model, $\Lambda$, much greater than any energy scale; in addition, this model also depends on an extra parameter, $\xi$. As to the other three models, the result looks like the renormalized effective potential for the usual Wess-Zumino model, where the normalization scale $\mu$ is replaced by the $\Lambda$. Moreover, the fourth model displays a divergence which can be eliminated through the appropriate wave function renormalization.
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Cited by 1 Pith paper
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Nonlocal spinor superfield theory
A three-dimensional nonlocal spinor superfield model is proposed and its one-loop effective potential is computed in local and nonlocal limits.
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