English

Vanishing Higgs Potential in Minimal Dark Matter Models

High Energy Physics - Phenomenology 2015-10-27 v2 Cosmology and Nongalactic Astrophysics

Abstract

We consider the Standard Model with a new particle which is charged under SU(2)LSU(2)_{L} with the hypercharge being zero. Such a particle is known as one of the dark matter (DM) candidates. We examine the realization of the multiple point criticality principle (MPP) in this class of models. Namely, we investigate whether the one-loop effective Higgs potential Veff(ϕ)V_{\text{eff}}(\phi) and its derivative dVeff(ϕ)/dϕdV_{\text{eff}}(\phi)/d\phi can become simultaneously zero at around the string/Planck scale, based on the one/two-loop renormalization group equations. As a result, we find that only the SU(2)LSU(2)_L triplet extensions can realize the MPP. More concretely, in the case of the triplet Majorana fermion, the MPP is realized at the scale ϕ=O(1016GeV)\phi={\cal{O}}(10^{16}\text{GeV}) if the top mass MtM_{t} is around 172172 GeV. On the other hand, for the real triplet scalar, the MPP can be satisfied for 1016 GeVϕ101710^{16}\text{ GeV}\lesssim\phi\lesssim10^{17}GeV and 172 GeVMt171172\text{ GeV}\gtrsim M_{t}\gtrsim171 GeV, depending on the coupling between the Higgs and DM.

Keywords

Cite

@article{arxiv.1506.06553,
  title  = {Vanishing Higgs Potential in Minimal Dark Matter Models},
  author = {Yuta Hamada and Kiyoharu Kawana},
  journal= {arXiv preprint arXiv:1506.06553},
  year   = {2015}
}

Comments

16 pages, 5 figures; some typos are corrected, footnotes are added, references are added, version to appear in PLB (v2)

R2 v1 2026-06-22T09:57:48.124Z