Axion Clouds around Neutron Stars
Abstract
Recent work has shown that axions can be efficiently produced via non-stationary pair plasma discharges in the polar cap region of pulsars. Here, we point out that for axion masses , a sizable fraction of the sourced axion population will be gravitationally confined to the neutron star. These axions accumulate over astrophysical timescales, thereby forming a dense `axion cloud' around the star. We argue that the existence of such a cloud, with densities reaching and potentially exceeding , is a generic expectation across a wide range of parameter space. For axion masses , energy is primarily radiated from the axion cloud via resonant axion-photon mixing, generating a number of distinctive signatures that include: a sharp line in the radio spectrum of each pulsar (located at the axion mass, and with an order percent-level width), and transient events arising from the reconfiguration of charge densities in the magnetosphere. While a deeper understanding of the systematic uncertainties in these systems is required, our current estimates suggest that existing radio telescopes could improve sensitivity to the axion-photon coupling by more than an order of magnitude.
Cite
@article{arxiv.2307.11811,
title = {Axion Clouds around Neutron Stars},
author = {Dion Noordhuis and Anirudh Prabhu and Christoph Weniger and Samuel J. Witte},
journal= {arXiv preprint arXiv:2307.11811},
year = {2024}
}
Comments
v2: 21 pages, 14 figures. Updated to match published version. Added new subsection on uncertainties, updated plots, and corrected minor bugs and typos. v1: 17 pages, 14 figures