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Analytic inclusion of the scale dependence of the anomalous dimension matrix in Standard Model Effective Theory

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arxiv 1804.05852 v2 pith:U37JN3CV submitted 2018-04-16 hep-ph

Analytic inclusion of the scale dependence of the anomalous dimension matrix in Standard Model Effective Theory

classification hep-ph
keywords scaleanalyticcasedependenceoperatorsolutionsconsidercoupling
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The renormalization group equations (RGEs) in Standard Model effective theory are usually either solved analytically, neglecting the scale dependence of gauge and Yukawa couplings, or numerically without such approximations. We present analytic solutions of RGEs that take into account the dominant scale dependence of the anomalous-dimension matrix due to the running of the QCD coupling and of the top-Yukawa coupling. We consider first the case for which a given operator is generated directly through mixing with the parent operator whose Wilson coefficient is non-vanishing at the new physics scale. Subsequently we consider the case of two-step running, in which two operators do not mix directly, but only via a third mediator operator. We generalize these solutions to an arbitrary number of operators and show how even in this case analytic solutions can be obtained.

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