4.8 Article

Gauge Coupling Unification and Nonequilibrium Thermal Dark Matter

Journal

PHYSICAL REVIEW LETTERS
Volume 110, Issue 24, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.110.241306

Keywords

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Funding

  1. French ANR TAPDMS [ANR-09-JCJC-0146]
  2. Spanish MICINN's Consolider-Ingenio [Multi-Dark CSD2009-00064]
  3. Consolider-Ingenio PAU [CSD2007-00060, CPAN CSD2007-00042, FPA2010-17747]
  4. European Union FP7 ITN INVISIBLES (Marie Curie Actions) [PITN-GA-2011-289442]
  5. DOE Grant at the University of Minnesota [DE-FG02-94ER-40823]

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We study a new mechanism for the production of dark matter in the Universe which does not rely on thermal equilibrium. Dark matter is populated from the thermal bath subsequent to inflationary reheating via a massive mediator whose mass is above the reheating scale T-RH. To this end, we consider models with an extra U(1) gauge symmetry broken at some intermediate scale (M-int similar or equal to 10(10)-10(12) GeV). We show that not only does the model allow for gauge coupling unification (at a higher scale associated with grand unification) but it can provide a dark matter candidate which is a standard model singlet but charged under the extra U(1). The intermediate scale gauge boson(s) which are predicted in several E6/SO(10) constructions can be a natural mediator between dark matter and the thermal bath. We show that the dark matter abundance, while never having achieved thermal equilibrium, is fixed shortly after the reheating epoch by the relation T-RH(3)/M-int(4). As a consequence, we show that the unification of gauge couplings which determines M-int also fixes the reheating temperature, which can be as high as T-RH similar or equal to 10(11) GeV.

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