arXiv:2606.20393·v1·High Energy Physics — Phenomenology
New Gauge Forces, Neutron Stars and Schwinger Neutrino Production
Yuxin Liu🇨🇳 · Zhen Liu🇺🇸 · Andrey Shkerin🇨🇦 · Jing Shu🇨🇳 · Yue Zhao🇨🇳
Abstract
We investigate neutrino effects of new long-range forces arising from gauging , or symmetries of the Standard Model. The leptonic potential generated by astronomical bodies, such as the Earth, the Sun or a neutron star, results in the Schwinger pair production of neutrinos charged under the new gauge symmetry. The oppositely charged particles accumulate in the potential well forming a degenerate Fermi gas, while equally charged particles fly away forming a steady flux of neutrinos. We find that, for the and forces, these effects are too weak to be observable. For the force these effects are significant in neutron stars if the gauge coupling is . The muonic force changes the element abundances of a neutron star in equilibrium and suppresses its charge. This invalidates the constraint on from neutron star mergers, at . Furthermore, for such values of , the neutrino flux produced by the Schwinger effect could potentially be detected from a single young neutron star at a distance of pc, with the typical neutrino energy MeV. A dedicated search for such a signal will reassert the bound .
Comments: 15 pages, 7 figures