Radio telescopes outperform other experiments at detecting high-frequency gravitational waves from primordial black hole mergers and boson clouds through conversion to radio signals in magnetic fields.
The global network of cavities to search for gravitational waves (gravnet): A novel scheme to hunt gravitational waves signatures from the early universe
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Cosmic muons produce synchrotron radiation that is not a dominant background for current high-Q axion searches but poses a risk for future broadband detectors lacking sufficient energy resolution.
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Radio Emission from High-Frequency Gravitational Wave Point Sources
Radio telescopes outperform other experiments at detecting high-frequency gravitational waves from primordial black hole mergers and boson clouds through conversion to radio signals in magnetic fields.
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Effects of Cosmic Muons on $\mu$eV-to-meV Scale Axion Dark Matter Searches
Cosmic muons produce synchrotron radiation that is not a dominant background for current high-Q axion searches but poses a risk for future broadband detectors lacking sufficient energy resolution.