Assuming axion-like particles account for the entirety of the dark matter in the Universe, we study the possibility of detecting their decay into photons at radio frequencies. We discuss different astrophysical targets, such as dwarf spheroidal galaxies, the Galactic Center and halo, and galaxy clusters. The presence of an ambient radiation field leads to a stimulated enhancement of the decay rate; depending on the environment and the mass of the axion, the effect of stimulated emission may amplify the photon flux by serval orders of magnitude. For axion-photon couplings allowed by astrophysical and laboratory constraints (and possibly favored by stellar cooling), we find the signal to be within the reach of next-generation radio telescopes...
When axion stars fly through an astrophysical magnetic background, the axion-to-photon conversion ma...
Terrestrial searches for the conversion of dark matter axions or axion-like particles into photons i...
Axion dark matter (DM) may efficiently convert to photons in the magnetospheres of neutron stars (NS...
Assuming axion-like particles account for the entirety of the dark matter in the Universe, we study ...
We discuss axion dark matter detection via two mechanisms: spontaneous decays and resonant conversio...
The axion is a hypothetical elementary particle and a cold dark matter candidate. It could dominate ...
Abstract Axion is one of the most popular candidates of the cosmological dark matter. Recent studies...
If dark matter is composed of axions, then axion stars form in the cores of dark matter halos. These...
International audienceIf the dark matter in the Universe is made of $\mu$eV axion-like particles (AL...
International audienceIf the dark matter in the Universe is made of $\mu$eV axion-like particles (AL...
We investigate the use of next generation radio telescopes such as the Square Kilometre Array (SKA) ...
We investigate the use of next generation radio telescopes such as the Square Kilometre Array (SKA) ...
Existing searches for cosmic axions relics have relied heavily on the axion being nonrelativistic an...
Existing searches for cosmic axions relics have relied heavily on the axion being nonrelativistic an...
Key Words dark matter, RF cavity, solar telescope ■ Abstract The axion, a favored dark matter candid...
When axion stars fly through an astrophysical magnetic background, the axion-to-photon conversion ma...
Terrestrial searches for the conversion of dark matter axions or axion-like particles into photons i...
Axion dark matter (DM) may efficiently convert to photons in the magnetospheres of neutron stars (NS...
Assuming axion-like particles account for the entirety of the dark matter in the Universe, we study ...
We discuss axion dark matter detection via two mechanisms: spontaneous decays and resonant conversio...
The axion is a hypothetical elementary particle and a cold dark matter candidate. It could dominate ...
Abstract Axion is one of the most popular candidates of the cosmological dark matter. Recent studies...
If dark matter is composed of axions, then axion stars form in the cores of dark matter halos. These...
International audienceIf the dark matter in the Universe is made of $\mu$eV axion-like particles (AL...
International audienceIf the dark matter in the Universe is made of $\mu$eV axion-like particles (AL...
We investigate the use of next generation radio telescopes such as the Square Kilometre Array (SKA) ...
We investigate the use of next generation radio telescopes such as the Square Kilometre Array (SKA) ...
Existing searches for cosmic axions relics have relied heavily on the axion being nonrelativistic an...
Existing searches for cosmic axions relics have relied heavily on the axion being nonrelativistic an...
Key Words dark matter, RF cavity, solar telescope ■ Abstract The axion, a favored dark matter candid...
When axion stars fly through an astrophysical magnetic background, the axion-to-photon conversion ma...
Terrestrial searches for the conversion of dark matter axions or axion-like particles into photons i...
Axion dark matter (DM) may efficiently convert to photons in the magnetospheres of neutron stars (NS...