English

The Dark Side of 4321

High Energy Physics - Phenomenology 2020-12-02 v1

Abstract

The evidence of Dark Matter (DM) is one of the strongest observational arguments in favour of physics beyond the Standard Model. Despite expectations, a similar evidence has been lacking so far in collider searches, with the possible exception of BB-physics discrepancies, a coherent set of persistent deviations in a homogeneous dataset consisting of bcb \to c and bsb \to s semi-leptonic transitions. We explore the question whether DM and the BB discrepancies may have a common origin. We do so in the context of the so-called 4321 gauge model, a UV-complete and calculable setup that yields a U1U_1 leptoquark, the by far most successful single mediator able to explain the BB anomalies, along with other new gauge bosons, including a ZZ^\prime. Adding to this setup a 'minimal' DM fermionic multiplet, consisting of a 4{\bf 4} under the 4321's SU(4)SU(4), we find the resulting model in natural agreement with the relic-density observation and with the most severe direct-detection bounds, in the sense that the parameter space selected by BB physics is also the one favoured by DM phenomenology. The DM candidate is a particle with a mass in the WIMP range, freeze-out dynamics includes a co-annihilator (the 'rest' of the 4{\bf 4} multiplet), and the most important gauge mediator in the DM sector is the ZZ^\prime.

Keywords

Cite

@article{arxiv.2005.10117,
  title  = {The Dark Side of 4321},
  author = {Diego Guadagnoli and Meril Reboud and Peter Stangl},
  journal= {arXiv preprint arXiv:2005.10117},
  year   = {2020}
}

Comments

33 pages, 7 figures