English

A Bound on Light Dark Photon Dark Matter

High Energy Physics - Phenomenology 2025-02-06 v3 Cosmology and Nongalactic Astrophysics High Energy Physics - Experiment

Abstract

We derive a bound on dark photon dark matter scenarios where the dark photon mass is generated through the Higgs mechanism, based on the requirement that symmetry breaking must occur sufficiently early in the universe. We emphasize that dark photon production occurs successfully when the dark Higgs field remains in the symmetric phase due to non-thermal trapping effects. For renormalizable Higgs potentials, our bound reads mγqHeH    60eV(2πλ)1/4\frac{m_{\gamma'}}{q_H e_H}\;\gg \;60\,{\rm eV}\left(\frac{2\pi}{\lambda}\right)^{1/4} where mγm_{\gamma'} is the dark photon mass, eHe_H is the gauge coupling, qHq_H is the charge of the dark Higgs boson, and λ\lambda is the Higgs quartic coupling}. This constraint holds independently of any complications arising from the Schwinger effect and vortex formation in the Higgsed phase. For more general Higgs potentials such as the Coleman-Weinberg type potential, our bound yields different forms. We argue that late-time symmetry breaking of the dark U(1) symmetry satisfying our bound has only a mild impact on both the abundance and momentum distribution of dark photon dark matter, and therefore does not pose any serious problem for the dark photon dark matter scenario.

Keywords

Cite

@article{arxiv.2410.17964,
  title  = {A Bound on Light Dark Photon Dark Matter},
  author = {Naoya Kitajima and Shota Nakagawa and Fuminobu Takahashi and Wen Yin},
  journal= {arXiv preprint arXiv:2410.17964},
  year   = {2025}
}

Comments

v3: 8 pages, 7 figures, version to appear in PLB

R2 v1 2026-06-28T19:33:01.848Z