Highly spinning Kerr black holes with masses M = 1-100 M(circle dot )are subject to an efficient superradiant instability in the presence of bosons with masses mu similar to 10(-10)-10(-12) eV. We observe that this matches the effective plasma-induced photon mass in diffuse galactic or intracluster environments (omega(pl )similar to 10(-10)-10(-12) eV). This suggests that bare Kerr black holes within galactic or intracluster environments, possibly even including the ones produced in recently observed gravitational wave events, are unstable to formation of a photon cloud that may contain a significant fraction of the mass of the original black hole. At maximal efficiency, the instability timescale for a massive vector is milliseconds, potent...
The possibility of mining the rotational energy from black holes has far--reaching implications. Su...
Ultralight bosons and axion-like particles appear naturally in different scenarios and could solve s...
Spinning black holes can transfer a significant fraction of their energy to ultralight bosonic field...
Highly spinning Kerr black holes with masses M=1–100M⊙ are subject to an efficient superradiant inst...
Highly spinning Kerr black holes with masses $M = 1 - 100\ M_{\odot}$ are subject to an efficient su...
Highly spinning Kerr black holes with masses $M = 1 - 100\ M_{\odot}$ are subject to an efficient su...
Rapidly rotating black holes are known to develop instabilities in the presence of a sufficiently li...
Superradiant instabilities of spinning black holes (BHs) can be used to impose strong constraints on...
Superradiance is a process by which massive bosonic particles can extract energy from spinning black...
Light bosonic degrees of freedom have become a serious candidate for dark matter, which seems to per...
Light bosonic degrees of freedom have become a serious candidate for dark matter, which seems to per...
We identify a physical mechanism that would have resulted in rapid, obscured growth of seed super-ma...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
It is broadly accepted that Supermassive Black Holes (SMBHs) are located in the centers of most mass...
We discuss the conditions under which plane electromagnetic and gravitational waves can be amplified...
The possibility of mining the rotational energy from black holes has far--reaching implications. Su...
Ultralight bosons and axion-like particles appear naturally in different scenarios and could solve s...
Spinning black holes can transfer a significant fraction of their energy to ultralight bosonic field...
Highly spinning Kerr black holes with masses M=1–100M⊙ are subject to an efficient superradiant inst...
Highly spinning Kerr black holes with masses $M = 1 - 100\ M_{\odot}$ are subject to an efficient su...
Highly spinning Kerr black holes with masses $M = 1 - 100\ M_{\odot}$ are subject to an efficient su...
Rapidly rotating black holes are known to develop instabilities in the presence of a sufficiently li...
Superradiant instabilities of spinning black holes (BHs) can be used to impose strong constraints on...
Superradiance is a process by which massive bosonic particles can extract energy from spinning black...
Light bosonic degrees of freedom have become a serious candidate for dark matter, which seems to per...
Light bosonic degrees of freedom have become a serious candidate for dark matter, which seems to per...
We identify a physical mechanism that would have resulted in rapid, obscured growth of seed super-ma...
Ultralight bosons can induce superradiant instabilities in spinning black holes, tapping their rotat...
It is broadly accepted that Supermassive Black Holes (SMBHs) are located in the centers of most mass...
We discuss the conditions under which plane electromagnetic and gravitational waves can be amplified...
The possibility of mining the rotational energy from black holes has far--reaching implications. Su...
Ultralight bosons and axion-like particles appear naturally in different scenarios and could solve s...
Spinning black holes can transfer a significant fraction of their energy to ultralight bosonic field...