English

A Simple Model of Dark Matter and CP Violation

High Energy Physics - Phenomenology 2022-04-29 v2 High Energy Physics - Experiment

Abstract

We propose a simple model of dark matter and CP violation and consider the associated triple and quadruple productions of 125 GeV Higgs bosons at the Large Hadron Collider (LHC). In the model, the dark matter is a vector-like dark fermion (χˉ,χ)(\bar{\chi}, \chi) interacting with the Standard Model only through a complex messenger scalar SS which is an electroweak singlet. New sources of CP violation reside in the most general scalar potential involving the doublet HH and the singlet SS, as well as in the dark Yukawa coupling between SS and (χˉ,χ)(\bar{\chi}, \chi). We study current experimental constraints from Higgs measurements, searches for new scalars at the LHC, precision electroweak measurements, EDM measurements, dark matter relic density, as well as direct and indirect detections of dark matter. A smoking-gun signature of CP violation could come from the Higgs-to-Higgs decays, h3h2h1h_3\to h_2h_1, where h3/h2/h1h_3/h_2/h_1 are the heaviest scalar, second heaviest scalar and the SM-like 125-GeV Higgs, respectively. Taking into account other Higgs-to-Higgs decays, such as h32h2h_3\to 2h_2 and h3/h22h1h_3/h_2\to 2h_1, then gives rise to novel 3h13h_1 and 4h14h_1 final states, which have yet to be searched for experimentally. We present four benchmarks and show the event rates for 3h13h_1 and 4h14h_1 final states could be as large as O(10) fb{\cal O}(10)\ {\rm fb} and O(1) fb{\cal O}(1)\ {\rm fb}, respectively, at the 14-TeV LHC. This work opens up a new frontier of searching for triple and quadruple Higgs bosons at a high energy collider.

Keywords

Cite

@article{arxiv.2202.02954,
  title  = {A Simple Model of Dark Matter and CP Violation},
  author = {Ting-Kuo Chen and Cheng-Wei Chiang and Ian Low},
  journal= {arXiv preprint arXiv:2202.02954},
  year   = {2022}
}

Comments

31 pages, 11 figures, 3 tables. [version 2] Updated to PRD version