Spectacular breakthroughs in numerical relativity now make it possible to compute spacetime dynamics in almost complete generality, allowing us to model the coalescence and merger of binary black holes with essentially no approximations. The primary limitation of these calculations is now computational. In particular, it is difficult to model systems with large mass ratio and large spins, since one must accurately resolve the multiple lengthscales which play a role in such systems. Perturbation theory can play an important role in extending the reach of computational modeling for binary systems. In this paper, we present first results of a code which allows us to model the gravitational waves generated by the inspiral, merger, and ri...
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...
In addition to the dominant oscillatory gravitational wave signals produced during binary inspirals,...
We present preliminary results from self-consistent, high resolution direct N-body simulations of ma...
We derive an analytic phenomenological expression that predicts the final mass of the black-hole rem...
We present the first numerical simulations of an initially nonspinning black-hole binary with mass r...
This paper studies the formation and evolution of binary supermassive black holes (SMBHs) in rotatin...
We investigate the dynamics and gravitational-wave (GW) emission in the binary merger of equal-mass ...
This paper studies the formation and evolution of binary supermassive black holes (SMBHs) in rotatin...
Coalescing binary black hole mergers are expected to be the strongest gravitational wave sources for...
We present preliminary results from self-consistent, high resolution direct N-body simulations of ma...
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...
Gravitational waves from the coalescence of binary black holes carry away linear momentum, causing c...
Gravitational waves from the coalescence of binary black holes carry away linear momentum, causing c...
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...
In addition to the dominant oscillatory gravitational wave signals produced during binary inspirals,...
We present preliminary results from self-consistent, high resolution direct N-body simulations of ma...
We derive an analytic phenomenological expression that predicts the final mass of the black-hole rem...
We present the first numerical simulations of an initially nonspinning black-hole binary with mass r...
This paper studies the formation and evolution of binary supermassive black holes (SMBHs) in rotatin...
We investigate the dynamics and gravitational-wave (GW) emission in the binary merger of equal-mass ...
This paper studies the formation and evolution of binary supermassive black holes (SMBHs) in rotatin...
Coalescing binary black hole mergers are expected to be the strongest gravitational wave sources for...
We present preliminary results from self-consistent, high resolution direct N-body simulations of ma...
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...
Gravitational waves from the coalescence of binary black holes carry away linear momentum, causing c...
Gravitational waves from the coalescence of binary black holes carry away linear momentum, causing c...
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...
In addition to the dominant oscillatory gravitational wave signals produced during binary inspirals,...