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arXiv:1309.0980·v3·High Energy Physics — Phenomenology

Non-decoupling two-loop corrections to (g-2)_\mu\ from fermion/sfermion loops in the MSSM

Helvecio Fargnoli🇩🇪 · Christoph Gnendiger🇩🇪 · Sebastian Passehr🇩🇪 · Dominik Stöckinger🇩🇪 · Hyejung Stöckinger-Kim🇩🇪

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Abstract

Two-loop contributions to the muon (g-2) from fermion/sfermion loops in the MSSM are presented, and an overview of the full MSSM prediction for (g-2) is given with emphasis on the behaviour in scenarios which are compatible with LHC data, including scenarios with large mass splittings. Compared to all previously known two-loop contributions, the fermion/sfermion-loop contributions can yield the largest numerical results. The new contributions contain the important universal quantities \Delta\alpha\ and \Delta\rho, and for large sfermion masses the contributions are non-decoupling and logarithmically enhanced. We find up to 15% (30%) corrections for sfermion masses in the 20 TeV (1000 TeV) range.

Comments: 14 pages, 6 figures, 5 tables, revtex; version published in Phys.Lett.B

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