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      Planckian Interacting Massive Particles as Dark Matter

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          Abstract

          The Standard Model could be self-consistent up to the Planck scale according to the present measurements of the Higgs mass and top quark Yukawa coupling. It is therefore possible that new physics is only coupled to the Standard Model through Planck suppressed higher dimensional operators. In this case the WIMP miracle is a mirage, and instead minimality as dictated by Occam's razor would indicate that dark matter is related to the Planck scale, where quantum gravity is anyway expected to manifest itself. Assuming within this framework that dark matter is a Planckian Interacting Massive Particle, we show that the most natural mass larger than \(0.01\,\textrm{M}_p\) is already ruled out by the absence of tensor modes in the CMB. This also indicates that we expect tensor modes in the CMB to be observed soon for this type of minimal dark matter model. Finally, we touch upon the KK graviton mode as a possible realization of this scenario within UV complete models, as well as further potential signatures and peculiar properties of this type of dark matter candidate. This paradigm therefore leads to a subtle connection between quantum gravity, the physics of primordial inflation, and the nature of dark matter.

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          Author and article information

          Journal
          2015-11-10
          2015-11-20
          Article
          10.1103/PhysRevLett.116.101302
          1511.03278
          d2edf60f-22a5-4291-9bc2-f287be048695

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

          History
          Custom metadata
          Phys. Rev. Lett. 116, 101302 (2016)
          5 pages, 1 figure, version submitted to journal
          hep-ph astro-ph.CO hep-th

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

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