English

Stellar probes of dark sector-photon interactions

High Energy Physics - Phenomenology 2019-10-09 v2 High Energy Astrophysical Phenomena

Abstract

Electromagnetically neutral dark sector particles may directly couple to the photon through higher dimensional effective operators. Considering electric and magnetic dipole moment, anapole moment, and charge radius interactions, we derive constraints from stellar energy loss in the Sun, horizontal branch and red giant stars, as well as from cooling of the proto-neutron star of SN1987A. We provide the exact formula for in-medium photon-mediated pair production to leading order in the dark coupling, and compute the energy loss rates explicitly for the most important processes, including a careful discussion on resonances and potential double counting between the processes. Stringent limits for dark states with masses below 33\,keV (4040\,MeV) arise from red giant stars (SN1987A), implying an effective lower mass-scale of approximately 10910^9\,GeV (10710^7\,GeV) for mass-dimension five, and 100100\,GeV (2.52.5\,TeV) for mass-dimension six operators as long as dark states stream freely; for the proto-neutron star, the trapping of dark states is also evaluated. Together with direct limits previously derived by us in Chu et al. (2018), this provides the first comprehensive overview of the viability of effective electromagnetic dark-state interactions below the GeV mass-scale.

Keywords

Cite

@article{arxiv.1908.00553,
  title  = {Stellar probes of dark sector-photon interactions},
  author = {Xiaoyong Chu and Jui-Lin Kuo and Josef Pradler and Lukas Semmelrock},
  journal= {arXiv preprint arXiv:1908.00553},
  year   = {2019}
}

Comments

To match the published version

R2 v1 2026-06-23T10:37:37.096Z