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arXiv:1312.3326·v2·High Energy Physics — Phenomenology

LUX Constraints on Magnetic Dark Matter in the y Model with(out) Naturality

Mads T. Frandsen🇩🇰 · Francesco Sannino🇩🇰 · Ian M. Shoemaker🇩🇰 · Ole Svendsen🇩🇰

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Abstract

We study phenomenological constraints in a simple y extension of the Standard Model (SM) with a 125 GeV Higgs, a vector-like heavy electron , a complex scalar electron and a standard model singlet Dirac fermion . The interactions among the dark matter candidate and the standard model particles occur via loop-induced processes involving the Yukawa interaction y. The model is an explicit perturbative realization of so-called magnetic dark matter. The field content allows for a cancelation of quadratic divergences in the scalar masses at one-loop, a phenomenon which we refer to as perturbative naturality. The basic model is constrained dominantly by direct detection experiments and its parameter space can be nearly entirely covered by up-coming ton-scale direct detection experiments. We conclude this work by discussing different variations of the model.

Comments: 17 pages, 3 figures; v2 matches PRD version

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