4.7 Article

Dark matter and gauge coupling unification in nonsupersymmetric SO(10) grand unified models

Journal

PHYSICAL REVIEW D
Volume 91, Issue 9, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.91.095010

Keywords

-

Funding

  1. Spanish MICINN's Consolider-Ingenio program [CSD2009-00064, FPA2010-17747]
  2. Mainz Institute for Theoretical Physics (MITP)
  3. European Union FP7 ITN INVISIBLES (Marie Curie Actions) [PITN-GA-2011-289442]
  4. ERC advanced grant MassTeV
  5. ERC advanced grant Higgs@LHC
  6. Japan Society for the Promotion of Science for Young Scientists
  7. DOE [DE-SC0011842]
  8. STFC [ST/J002798/1]
  9. STFC [ST/J002798/1] Funding Source: UKRI
  10. Science and Technology Facilities Council [ST/J002798/1] Funding Source: researchfish

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Unlike minimal SU(5), SO(10) provides a straightforward path towards gauge coupling unification by modifying the renormalization group evolution of the gauge couplings above some intermediate scale which may also be related to the seesaw mechanism for neutrino masses. Unification can be achieved for several different choices of the intermediate gauge group below the SO(10) breaking scale. In this work, we consider in detail the possibility that SO(10) unification may also provide a natural dark matter candidate, stability being guaranteed by a leftover Z(2) symmetry. We systematically examine the possible intermediate gauge groups which allow a nondegenerate, fermionic, Standard Model singlet dark matter candidate while at the same time respecting gauge coupling unification. Our analysis is done at the two-loop level. Surprisingly, despite the richness of SO(10), we find that only two models survive the analysis of phenomenological constraints, which include suitable neutrino masses, proton decay, and reheating.

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