English

$Z^\prime$ portal dark matter in the minimal $B-L$ model

High Energy Physics - Phenomenology 2018-05-08 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Experiment

Abstract

In this review article, we consider a dark matter scenario in the context of the minimal extension of the Standard Model (SM) with a BLB-L (baryon number minus lepton number) gauge symmetry, where three right-handed neutrinos with a BLB-L charge 1-1 and a BLB-L Higgs field with a BLB-L charge +2+2 are introduced to make the model anomaly-free and to break the BLB-L gauge symmetry, respectively. The BLB-L gauge symmetry breaking generates the Majorana masses for the right-handed neutrinos. We introduce a Z2_2 symmetry to the model and assign an odd parity only for one right-handed neutrino, and hence the Z2_2-odd right-handed neutrino is stable and the unique dark matter candidate in the model. The so-called minimal seesaw works with the other two right-handed neutrinos and reproduces the current neutrino oscillation data. We consider the case that the dark matter particle communicates with the SM particles through the BLB-L gauge boson (ZBLZ^{\prime}_{B-L} boson), and obtain a lower bound on the BLB-L gauge coupling (αBL\alpha_{B-L}) as a function of the ZBLZ^{\prime}_{B-L} boson mass (mZm_{Z^{\prime}}) from the observed dark matter relic density. On the other hand, we interpret the recent LHC Run-2 results on the search for a ZZ^{\prime} boson resonance to an upper bound on αBL\alpha_{B-L} as a function of mZm_{Z^{\prime}}. These two constraints are complementary to narrow down an allowed parameter region for this "ZZ^{\prime} portal" dark matter scenario, leading to a lower mass bound of mZ3.9m_{Z^{\prime}} \geq 3.9 TeV.

Keywords

Cite

@article{arxiv.1803.06793,
  title  = {$Z^\prime$ portal dark matter in the minimal $B-L$ model},
  author = {Satomi Okada},
  journal= {arXiv preprint arXiv:1803.06793},
  year   = {2018}
}

Comments

11 pages, 5 figures, Review article to be published in Advances in High Energy Physics. arXiv admin note: text overlap with arXiv:1601.07526