Superradiant instabilities may create clouds of ultralight bosons around rotating black holes, forming so-called "gravitational atoms." It was recently shown that the presence of a binary companion can induce resonant transitions between bound states of these clouds, whose backreaction on the binary's orbit leads to characteristic signatures in the emitted gravitational waves. In this work, we show that the interaction with the companion can also trigger transitions from bound to unbound states of the cloud -- a process that we refer to as "ionization" in analogy with the photoelectric effect in atomic physics. The orbital energy lost in the process overwhelms the losses due to gravitational wave emission and contains sharp features carryin...
We study the impact of a binary companion on black hole superradiance at orbital frequencies away fr...
We study the imprints of new ultralight particles on the gravitational-wave signals emitted by binar...
Ultralight boson is one of the potential candidates for dark matter. If exists, it can be generated ...
Due to superradiant instabilities, clouds of ultralight bosons can spontaneously grow around rotatin...
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 gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
Black hole as elementary particle is a fairly glamorous idea. For ordinary black holes, a surroundin...
Future gravitational wave interferometers such as LISA, Taiji, DECIGO, and TianQin, will enable prec...
We demonstrate that gravitational waves from binary systems can provide smoking gun evidence for ult...
Gravitational atoms produced from the superradiant extraction of rotational energy of spinning black...
While an axion-clouded black hole (BH) encounters a pulsar (PSR) or has a PSR companion, a "gravitat...
We study the impact of a binary companion on black hole superradiance at orbital frequencies away fr...
We study the imprints of new ultralight particles on the gravitational-wave signals emitted by binar...
Ultralight boson is one of the potential candidates for dark matter. If exists, it can be generated ...
Due to superradiant instabilities, clouds of ultralight bosons can spontaneously grow around rotatin...
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 gravitational-wave (GW) signatures of clouds of ultralight bosons around black holes (B...
Black hole as elementary particle is a fairly glamorous idea. For ordinary black holes, a surroundin...
Future gravitational wave interferometers such as LISA, Taiji, DECIGO, and TianQin, will enable prec...
We demonstrate that gravitational waves from binary systems can provide smoking gun evidence for ult...
Gravitational atoms produced from the superradiant extraction of rotational energy of spinning black...
While an axion-clouded black hole (BH) encounters a pulsar (PSR) or has a PSR companion, a "gravitat...
We study the impact of a binary companion on black hole superradiance at orbital frequencies away fr...
We study the imprints of new ultralight particles on the gravitational-wave signals emitted by binar...
Ultralight boson is one of the potential candidates for dark matter. If exists, it can be generated ...