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Decoupling of the $\epsilon$-scalar mass in softly broken supersymmetry

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arxiv hep-ph/9407291 v1 pith:TQGEZG2S submitted 1994-07-14 hep-ph

classification hep-ph
keywords tildedrbarscalarbrokencorrectionsepsilonmassone-loop
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

It has been shown recently that the introduction of an unphysical $\epsilon$-scalar mass $\tilde{m}$ is necessary for the proper renormalization of softly broken supersymmetric theories by dimensional reduction ($\drbar$). In these theories, both the two-loop $\beta$-functions of the scalar masses and their one-loop finite corrections depend on $\tilde{m}^2$. We find, however, that the dependence on $\tilde{m}^2$ can be completely removed by slightly modifying the \drbar renormalization scheme. We also show that previous \drbar calculations of one-loop corrections in supersymmetry which ignored the $\tilde{m}^2$ contribution correspond to using this modified scheme.

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