Light bosons, proposed as a possible solution to various problems in fundamental physics and cosmology , include a broad class of candidates for physics beyond the standard model, such as dilatons and moduli , wave dark matter and axion-like particles. If light bosons exist in nature, they will spontaneously form ‘clouds’ by extracting rotational energy from rotating massive black holes through superradiance, a classical wave amplification process that has been studied for decades. The superradiant growth of the cloud sets the geometry of the final black hole, and the black hole geometry determines the shape of the cloud. Hence, both the black hole geometry and the cloud encode information about the light boson. For this reason, measurement...
Gravitational-wave detectors can be used to search for yet-undiscovered ultralight bosons, including...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We demonstrate that gravitational waves from binary systems can provide smoking gun evidence for ult...
We demonstrate that gravitational waves from binary systems can provide smoking gun evidence for ult...
Ultralight bosons can form clouds around rotating black holes if their Compton wavelength is compara...
Ultralight bosons can form clouds around rotating black holes if their Compton wavelength is compara...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
Ultralight bosons can form clouds around rotating black holes if their Compton wavelength is compar...
Clouds of ultralight bosons-such as axions-can form around a rapidly spinning black hole, if the bla...
Clouds of ultralight bosons-such as axions-can form around a rapidly spinning black hole, if the bla...
Ultralight scalar fields around spinning black holes can trigger superradiant instabilities, forming...
International audienceUltralight bosons can induce superradiant instabilities in spinning black hole...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
Gravitational-wave detectors can be used to search for yet-undiscovered ultralight bosons, including...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We demonstrate that gravitational waves from binary systems can provide smoking gun evidence for ult...
We demonstrate that gravitational waves from binary systems can provide smoking gun evidence for ult...
Ultralight bosons can form clouds around rotating black holes if their Compton wavelength is compara...
Ultralight bosons can form clouds around rotating black holes if their Compton wavelength is compara...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
Ultralight bosons can form clouds around rotating black holes if their Compton wavelength is compar...
Clouds of ultralight bosons-such as axions-can form around a rapidly spinning black hole, if the bla...
Clouds of ultralight bosons-such as axions-can form around a rapidly spinning black hole, if the bla...
Ultralight scalar fields around spinning black holes can trigger superradiant instabilities, forming...
International audienceUltralight bosons can induce superradiant instabilities in spinning black hole...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
Gravitational-wave detectors can be used to search for yet-undiscovered ultralight bosons, including...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...