Pseudo-Goldstone Dark Matter in $SO(10)$
Abstract
We propose a pseudo-Goldstone boson dark matter (pGDM) particle in grand unified theory (GUT). Due to its Goldstone nature, this pGDM evades the direct DM detection experiments which, otherwise, severely constrain the parameter space of DM models. In , the pGDM is embedded as a linear combination of the Standard Model (SM) singlet scalars in and representations. We consider two scenarios for the intermediate route of symmetry breaking (SB) to the SM: and Pati-Salam the (4-2-2) gauge groups. The vacuum expectation value of , which triggers the breaking of and 4-2-2 symmetry in the two scenarios, respectively, determines the pGDM lifetime whose astrophysical lower bound provides one of the most stringent constraints. For the 4-2-2 route to , the successful SM gauge coupling unification requires the 4-2-2 breaking scale to be GeV, and most of the parameter space is excluded. For the route, on the other hand, the breaking scale can be significantly higher, and a wide range of the parameter space is allowed. Furthermore, the proton lifetime in the case is predicted to be years, which lies well within the sensitivity reach of the Hyper-Kamiokande experiment. We also examine the constraints on the model parameter space from the Large Hadron Collider and the indirect DM search by Fermi-LAT and MAGIC experiments.
Cite
@article{arxiv.2105.03419,
title = {Pseudo-Goldstone Dark Matter in $SO(10)$},
author = {Nobuchika Okada and Digesh Raut and Qaisar Shafi and Anil Thapa},
journal= {arXiv preprint arXiv:2105.03419},
year = {2021}
}
Comments
25 pages, 5 figures, Figures 3 revised, updated version accepted for publication in PRD