English

Dark Matter as the signal of Grand Unification

High Energy Physics - Phenomenology 2014-11-20 v3

Abstract

We argue that the existence of Dark Matter (DM) is a possible consequence of GUT symmetry breaking. In GUTs like SO(10), discrete Z_2 matter parity (-1)^{3(B-L)} survives despite of broken B-L, and group theory uniquely determines that the only possible Z_2-odd matter multiplets belong to representation 16. We construct the minimal non-SUSY SO(10) model containing one scalar 16 for DM and study its predictions below M_{G}. We find that EWSB occurs radiatively due to DM couplings to the SM Higgs boson. For thermal relic DM the mass range M_{DM}\sim (0.1-1) TeV is predicted by model perturbativity up to M_{G}. For M_{DM}\sim (1) TeV to explain the observed cosmic ray anomalies with DM decays, there exists a lower bound on the spin-independent direct detection cross section within the reach of planned experiments.

Keywords

Cite

@article{arxiv.0907.1894,
  title  = {Dark Matter as the signal of Grand Unification},
  author = {Mario Kadastik and Kristjan Kannike and Martti Raidal},
  journal= {arXiv preprint arXiv:0907.1894},
  year   = {2014}
}

Comments

DM direct detection cross section is corrected by adding s-quark contribution which turned out to be the dominant one. The prediction is just below the present CDMS and XENON10 bound. Extended version, RGE-s included, new references added