English

Fermionic dark matter with pseudo-scalar Yukawa interaction

High Energy Physics - Phenomenology 2015-01-12 v2

Abstract

We consider a renormalizable extension of the standard model whose fermionic dark matter (DM) candidate interacts with a real singlet pseudo-scalar via a pseudo-scalar Yukawa term while we assume that the full Lagrangian is CP-conserved in the classical level. When the pseudo-scalar boson develops a non-zero vacuum expectation value, spontaneous CP-violation occurs and this provides a CP-violated interaction of the dark sector with the SM particles through mixing between the Higgs-like boson and the SM-like Higgs boson. This scenario suggests a minimal number of free parameters. Focusing mainly on the indirect detection observables, we calculate the dark matter annihilation cross section and then compute the DM relic density in the range up to mDM=300m_{\text{DM}} = 300 GeV. We then find viable regions in the parameter space constrained by the observed DM relic abundance as well as invisible Higgs decay width in the light of 125 GeV Higgs discovery at the LHC. We find that within the constrained region of the parameter space, there exists a model with dark matter mass mDM38m_{\text{DM}} \sim 38 GeV annihilating predominantly into bb quarks, which can explain the Fermi-LAT galactic gamma-ray excess.

Keywords

Cite

@article{arxiv.1408.4929,
  title  = {Fermionic dark matter with pseudo-scalar Yukawa interaction},
  author = {Karim Ghorbani},
  journal= {arXiv preprint arXiv:1408.4929},
  year   = {2015}
}

Comments

21 pages, v2: text clarification, Feynman diagrams and some references added, version to appear in JCAP

R2 v1 2026-06-22T05:35:25.364Z