Hunting Galactic Axion Dark Matter with Gravitationally Lensed Fast Radio Bursts

Fuente: arXiv
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Main Authors: Gao, Ran, Li, Zhengxiang, Liao, Kai, Gao, He, Zhang, Bing, Zhu, Zong-Hong
Format: Preprint
Published: 2023
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author Gao, Ran
Li, Zhengxiang
Liao, Kai
Gao, He
Zhang, Bing
Zhu, Zong-Hong
author_facet Gao, Ran
Li, Zhengxiang
Liao, Kai
Gao, He
Zhang, Bing
Zhu, Zong-Hong
contents Ultralight axion or axionlike particles are one of the most promising candidates for dark matter because they are a well-motivated solution for the theoretical strong $CP$ problem and observational issues on small scales, i.e. the core-cusp problem and the satellite problem. A tiny coupling of axions and photons induces birefringence. We propose the differential birefringence measurements of multiple images of gravitationally lensed fast radio burst (FRB) systems as probes of the Galactic axion dark matter (ADM) background. In addition to general advantages of lensing systems, i.e. alleviating systematics and intrinsic astrophysical dependencies, precise measurements of lensing time delay and polarization angle in gravitationally lensed FRB systems make them a more robust and powerful probe. We show that, with a single lensed FRB system (which may be detected in large numbers in the SKA era), the axion-photon coupling under the ADM background could be constrained to be $g_{aγ} < 7.3 \times 10^{-11}~ \mathrm{GeV^{-1}}$ for an axion mass $m_a\sim10^{-20}~\mathrm{eV}$. This will be of great significance in achieving synergistic searches of the Galactic ADM with other astrophysical probes and laboratorial experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2312_12997
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Hunting Galactic Axion Dark Matter with Gravitationally Lensed Fast Radio Bursts
Gao, Ran
Li, Zhengxiang
Liao, Kai
Gao, He
Zhang, Bing
Zhu, Zong-Hong
Cosmology and Nongalactic Astrophysics
Ultralight axion or axionlike particles are one of the most promising candidates for dark matter because they are a well-motivated solution for the theoretical strong $CP$ problem and observational issues on small scales, i.e. the core-cusp problem and the satellite problem. A tiny coupling of axions and photons induces birefringence. We propose the differential birefringence measurements of multiple images of gravitationally lensed fast radio burst (FRB) systems as probes of the Galactic axion dark matter (ADM) background. In addition to general advantages of lensing systems, i.e. alleviating systematics and intrinsic astrophysical dependencies, precise measurements of lensing time delay and polarization angle in gravitationally lensed FRB systems make them a more robust and powerful probe. We show that, with a single lensed FRB system (which may be detected in large numbers in the SKA era), the axion-photon coupling under the ADM background could be constrained to be $g_{aγ} < 7.3 \times 10^{-11}~ \mathrm{GeV^{-1}}$ for an axion mass $m_a\sim10^{-20}~\mathrm{eV}$. This will be of great significance in achieving synergistic searches of the Galactic ADM with other astrophysical probes and laboratorial experiments.
title Hunting Galactic Axion Dark Matter with Gravitationally Lensed Fast Radio Bursts
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2312.12997