Constraints on extended axion structures from the lensing of fast radio bursts
arXiv:2501.07176 · doi:10.1088/1475-7516/2025/04/067
Abstract
Axions are hypothetical pseudoscalar particles that have been regarded as promising dark matter (DM) candidates. On the other hand, extended compact objects such as axion stars, which are supported by gravity and axion self interactions, may have also been formed in the early Universe and comprise part of DM. In this work, we consider the lensing of electromagnetic signals from distant sources by axion stars, as a way to constrain the properties of axion stars and fundamental axion parameters. Accounting for the effect of the finite size of the axion star, we study the lensing effect induced by gravity, and by axion-photon interactions. The latter effect is frequency dependent, and is relevant in the low frequency band, which motivates the use of fast radio burst (FRB) signals as a probe. We calculate the predicted number of lensed FRB events by specifying the fundamental axion parameters, axion star radial profile, fraction of DM residing in axion stars, and imposing lensing criteria based on the flux ratio and time delay between the brightest images from lensing. Assuming an optimistic case of observed FRB events, and a timing resolution of , the lack of observed FRB lensing events in CHIME allows us to probe axion stars with mass , corresponding to axion masses and for negligible axion-photon couplings. Even lighter axion stars up to can be probed, assuming axion-photon couplings of at least . Our results indicate that while FRB lensing by axion stars lead to sensitivities that are competitive with conventional microlensing searches operating in the optical band, it remains a challenge to probe axion-photon induced lensing effects.
35 pages, 14 figures, and 1 table. Accepted for JCAP
References in corpus (19)
- The mass distribution and gravitational potential of the Milky Way
- The First CHIME/FRB Fast Radio Burst Catalog
- Bose-Einstein Condensation of Dark Matter Axions
- Dilute and dense axion stars
- Relativistic axions from collapsing Bose stars
- The photo-philic QCD axion
- Subaru through a different lens: microlensing by extended dark matter structures
- Search for Dark Matter Axions with CAST-CAPP
- Simulations of Axion Minihalos
- Merger of Dark Matter Axion Clumps and Resonant Photon Emission
- Quantum and Classical Behavior in Interacting Bosonic Systems
- Microlensing constraints on axion stars including finite lens and source size effects
- Revealing Dark Matter Dress of Primordial Black Holes by Cosmological Lensing
- Gravitational Lensing in Modified Gravity: A case study for Fast Radio Bursts
- Detecting Cosmic Strings with Lensed Fast Radio Bursts
- Future Constraints on Dark Matter with Gravitationally Lensed Fast Radio Bursts Detected by BURSTT
- Hunting Galactic Axion Dark Matter with Gravitationally Lensed Fast Radio Bursts
- Bending of light in axion backgrounds
- Towards the first axion search results of the Any Light Particle Search II experiment