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      Scalar Split WIMPs in the Future Direct Detection Experiments

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          Abstract

          We consider a simple renormalizable dark matter model consisting of two real scalars with a mass splitting \(\delta\), interacting with the SM particles through the Higgs portal. We find a viable parameter space respecting all the bounds imposed by invisible Higgs decay experiments at the LHC, the direct detection experiments by XENON100 and LUX and the dark matter relic abundance provided by WMAP and Planck. Despite the singlet scalar dark matter model that is fragile against the future direct detection experiments, the scalar split model introduced here survives such forthcoming bounds. We emphasize on the role of the co-annihilation processes and the mixing effects in this feature. For \(m_{\text{DM}} \sim 63\) GeV in this model we can explain as well the observed gamma-ray excess in the analyses of the Fermi-LAT data at Galactic latitudes \(2^{\circ} \leq |b| \leq 20^{\circ}\) and Galactic longitudes \(|l| < 20^{\circ}\).

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          Author and article information

          Journal
          2014-12-31
          2016-02-20
          Article
          1501.00206
          88aa6159-9eb5-4abd-aa38-ddaace700203

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          22 pages, 11 figures, phenomenology discussion extended and improved, a formula added in the Appendix, version to appear in PRD
          hep-ph astro-ph.CO

          Cosmology & Extragalactic astrophysics,High energy & Particle physics
          Cosmology & Extragalactic astrophysics, High energy & Particle physics

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