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Two-loop scalar self-energies and pole masses in a general renormalizable theory with massless gauge bosons

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arxiv hep-ph/0502168 v2 pith:W5QZKAFB submitted 2005-02-18 hep-ph

classification hep-ph
keywords two-loopmassesbosonsgaugepolescalarapproximationgeneral
verification ladder T0 review T1 audit T2 compute T3 formal
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I present the two-loop self-energy functions for scalar bosons in a general renormalizable theory, within the approximation that vector bosons are treated as massless or equivalently that gauge symmetries are unbroken. This enables the computation of the two-loop physical pole masses of scalar particles in that approximation. The calculations are done simultaneously in the mass-independent \bar{MS}, \bar{DR}, and \bar{DR}' renormalization schemes, and with arbitrary covariant gauge fixing. As an example, I present the two-loop SUSYQCD corrections to squark masses, which can increase the known one-loop results by of order one percent. More generally, it is now straightforward to implement all two-loop sfermion pole mass computations in supersymmetry using the results given here, neglecting only the electroweak vector boson masses compared to the superpartner masses in the two-loop parts.

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