English

Investigation of Dark Matter in the 3-2-3-1 Model

High Energy Physics - Phenomenology 2018-09-28 v2

Abstract

We prove that the SU(3)CSU(2)LSU(3)RU(1)XSU(3)_C\otimes SU(2)_L \otimes SU(3)_R\otimes U(1)_X (3-2-3-1) gauge model always contains a matter parity WP=(1)3(BL)+2sW_P=(-1)^{3(B-L)+2s} as conserved residual gauge symmetry, where BL=2(βT8R+X)B-L=2(\beta T_{8R}+X) is a SU(3)RU(1)XSU(3)_R\otimes U(1)_X charge. Due to the non-Abelian nature of BLB-L, the WW-odd and WW-even fields are actually unified in gauge multiplets. We investigate two viable versions for dark matter according to β=±1/3\beta=\pm1/\sqrt{3}, where the dark matter candidates can be fermion, scalar, or vector fields. We figure out the parameter spaces in the allowed regions of the relic density and direct detection cross-sections. Additionally, we examine the neutrino masses induced by the seesaw mechanism along with associated lepton flavor violation processes. The new gauge boson searches at the LEPII and LHC are discussed.

Keywords

Cite

@article{arxiv.1802.10402,
  title  = {Investigation of Dark Matter in the 3-2-3-1 Model},
  author = {D. T. Huong and P. V. Dong and N. T. Duy and N. T. Nhuan and L. D. Thien},
  journal= {arXiv preprint arXiv:1802.10402},
  year   = {2018}
}

Comments

25 pages, 7 figures; presentation including motivation and results improved, references added; version to appear in Physical Review D