We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (BHs) in binary inspirals. These clouds, which are formed via superradiance instabilities for rapidly rotating BHs, produce distinct effects in the population of BH masses and spins, and a continuous monochromatic GW signal. We show that the presence of a binary companion greatly enriches the dynamical evolution of the system, most remarkably through the existence of resonant transitions between the growing and decaying modes of the cloud (analogous to Rabi oscillations in atomic physics). These resonances have rich phenomenological implications for current and future GW detectors. Notably, the amplitude of the GW signal from the clouds may be ...
Superradiant instabilities can trigger the formation of bosonic clouds around rotating black holes. ...
Ultralight bosons can form large clouds around stellar-mass black holes via the superradiance instab...
Solitonic boson stars are stable objects made of a complex scalar field with a compactness that can ...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the imprints of new ultralight particles on the gravitational-wave signals emitted by binar...
We demonstrate that gravitational waves from binary systems can provide smoking gun evidence for ult...
Ultralight scalars can extract rotational energy from astrophysical black holes through superradiant...
Superradiant instabilities can trigger the formation of bosonic clouds around rotating black holes. ...
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 compar...
The beginning of gravitational-wave astronomy dates from the 14th of September 2015, when the Laser ...
Superradiant instabilities can trigger the formation of bosonic clouds around rotating black holes. ...
Ultralight bosons can form large clouds around stellar-mass black holes via the superradiance instab...
Solitonic boson stars are stable objects made of a complex scalar field with a compactness that can ...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
We study the imprints of new ultralight particles on the gravitational-wave signals emitted by binar...
We demonstrate that gravitational waves from binary systems can provide smoking gun evidence for ult...
Ultralight scalars can extract rotational energy from astrophysical black holes through superradiant...
Superradiant instabilities can trigger the formation of bosonic clouds around rotating black holes. ...
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 compar...
The beginning of gravitational-wave astronomy dates from the 14th of September 2015, when the Laser ...
Superradiant instabilities can trigger the formation of bosonic clouds around rotating black holes. ...
Ultralight bosons can form large clouds around stellar-mass black holes via the superradiance instab...
Solitonic boson stars are stable objects made of a complex scalar field with a compactness that can ...