English

Anomaly-Free Dark Matter Models are not so Simple

High Energy Physics - Phenomenology 2017-09-13 v2 High Energy Physics - Experiment

Abstract

We explore the anomaly-cancellation constraints on simplified dark matter (DM) models with an extra U(1)^\prime gauge boson ZZ'. We show that, if the Standard Model (SM) fermions are supplemented by a single DM fermion χ\chi that is a singlet of the SM gauge group, and the SM quarks have non-zero U(1)^\prime charges, the SM leptons must also have non-zero U(1)^\prime charges, in which case LHC searches impose strong constraints on the ZZ' mass. Moreover, the DM fermion χ\chi must have a vector-like U(1)^\prime coupling. If one requires the DM particle to have a purely axial U(1)^\prime coupling, which would be the case if χ\chi were a Majorana fermion and would reduce the impact of direct DM searches, the simplest possibility is that it is accompanied by one other new singlet fermion, but in this case the U(1)^\prime charges of the SM leptons still do not vanish. This is also true in a range of models with multiple new singlet fermions with identical charges. Searching for a leptophobic model, we then introduce extra fermions that transform non-trivially under the SM gauge group. We find several such models if the DM fermion is accompanied by two or more other new fermions with non-identical charges, which may have interesting experimental signatures. We present benchmark representatives of the various model classes we discuss.

Keywords

Cite

@article{arxiv.1704.03850,
  title  = {Anomaly-Free Dark Matter Models are not so Simple},
  author = {John Ellis and Malcolm Fairbairn and Patrick Tunney},
  journal= {arXiv preprint arXiv:1704.03850},
  year   = {2017}
}

Comments

19 pages, 0 figures, this v2 matches version accepted for publication

R2 v1 2026-06-22T19:15:56.555Z