Stellar limits on scalars from electron-nucleus bremsstrahlung
Abstract
We revisit stellar energy-loss bounds on the Yukawa couplings of baryophilic and leptophilic scalars . The white-dwarf luminosity function yields and , based on bremsstrahlung from and collisions with electrons. In models with a Higgs portal, this also implies a bound on the scalar-Higgs mixing angle . Our new bounds apply for and are among the most restrictive ones, whereas for long-range force measurements dominate. Besides a detailed calculation of the bremsstrahlung rate for degenerate and semi-relativistic electrons, we prove with a simple argument that non-relativistic bremsstrahlung by the heavy partner is suppressed relative to that by the light one by their squared-mass ratio. This large reduction was overlooked in previous much stronger bounds on . In an Appendix, we provide fitting formulas (few percent precision) for the bremsstrahlung emission of baryophilic and leptophilic scalars as well as axions for white-dwarf conditions, i.e., degenerate, semi-relativistic electrons and ion-ion correlations in the ``liquid'' phase.
Cite
@article{arxiv.2303.00778,
title = {Stellar limits on scalars from electron-nucleus bremsstrahlung},
author = {Salvatore Bottaro and Andrea Caputo and Georg Raffelt and Edoardo Vitagliano},
journal= {arXiv preprint arXiv:2303.00778},
year = {2023}
}
Comments
22 pages + appendices, 7 figures. Matches the published version