Gravitational waves from the coalescence of binary black holes carry away linear momentum, causing center of mass recoil. This radiation rocket effect has important implications for systems with escape speeds of order the recoil velocity. We revisit this problem using black hole perturbation theory, treating the binary as a test mass spiraling into a spinning hole. For extreme ratios (q ≡ m1/m2 ≪ 1), we compute the recoil for the slow in-spiral epoch of binary coalescence very accurately; these results can be extrapolated to q ∼ 0.4 with modest accuracy. Although the recoil from the final plunge contributes significantly to the final recoil, we are only able to make crude estimates of its magnitude. We find that the recoil can easily reac...
Coalescing binary black holes experience a “kick” due to anisotropic emission of gravitational waves...
Gravitational waves carry energy, angular momentum, and linear momentum. In generic binary black hol...
We assess the influence of massive black hole (MBH) ejections from galaxy centres due to gravitation...
Gravitational waves from the coalescence of binary black holes carry away linear momentum, causing c...
Coalescing binary black holes experience an impulsive kick from anisotropic emission of gravitationa...
Coalescing binary black holes experience an impulsive kick from anisotropic emission of gravitationa...
Coalescing binary black holes experience an impulsive kick due to anisotropic emission of gravitatio...
The final black hole left behind after a binary black hole merger can attain a recoil velocity, or a...
Binary black holes radiate linear momentum in gravitational waves as they merge. Recoils imparted to...
Coalescing binary black holes experience an impulsive kick from anisotropic emission of gravitationa...
Binary black holes radiate linear momentum in gravitational waves as they merge. Recoils imparted to...
The inspiral and merger of binary black holes will likely involve black holes with both unequal mass...
Current experiments hope to detect gravitational waves—oscillations of space and time predicted by E...
Binary black holes radiate linear momentum in gravitational waves as they merge. Recoils imparted to...
Coalescing binary black holes experience a “kick” due to anisotropic emission of gravitational waves...
Coalescing binary black holes experience a “kick” due to anisotropic emission of gravitational waves...
Gravitational waves carry energy, angular momentum, and linear momentum. In generic binary black hol...
We assess the influence of massive black hole (MBH) ejections from galaxy centres due to gravitation...
Gravitational waves from the coalescence of binary black holes carry away linear momentum, causing c...
Coalescing binary black holes experience an impulsive kick from anisotropic emission of gravitationa...
Coalescing binary black holes experience an impulsive kick from anisotropic emission of gravitationa...
Coalescing binary black holes experience an impulsive kick due to anisotropic emission of gravitatio...
The final black hole left behind after a binary black hole merger can attain a recoil velocity, or a...
Binary black holes radiate linear momentum in gravitational waves as they merge. Recoils imparted to...
Coalescing binary black holes experience an impulsive kick from anisotropic emission of gravitationa...
Binary black holes radiate linear momentum in gravitational waves as they merge. Recoils imparted to...
The inspiral and merger of binary black holes will likely involve black holes with both unequal mass...
Current experiments hope to detect gravitational waves—oscillations of space and time predicted by E...
Binary black holes radiate linear momentum in gravitational waves as they merge. Recoils imparted to...
Coalescing binary black holes experience a “kick” due to anisotropic emission of gravitational waves...
Coalescing binary black holes experience a “kick” due to anisotropic emission of gravitational waves...
Gravitational waves carry energy, angular momentum, and linear momentum. In generic binary black hol...
We assess the influence of massive black hole (MBH) ejections from galaxy centres due to gravitation...