Combining recent techniques giving non-perturbative re-summed estimates of the damping and conservative parts of the two-body dynamics, we describe the transition between the adiabatic phase and the plunge, in coalescing binary black holes with comparable masses moving on quasi-circular orbits. We give initial dynamical data for numerical relativity investigations, with a fraction of an orbit left, and provide, for data analysis purposes, an estimate of the gravitational wave-form emitted throughout the inspiral, plunge and coalescence phases
We compute and analyze the gravitational waveform emitted to future null infinity by a system of two...
Gravitational radiation arising from the inspiral and merger of binary black holes (BBH's) is a prom...
Over the last few years enormous progress has been made in the numerical description of the inspiral...
Using two recent techniques giving non-perturbative re-summed estimates of the damping and of the co...
We study the coalescence of non-spinning binary black holes from the innermost stable circular orbit...
We study the transition from inspiral to plunge in general relativity by computing gravitational wav...
Binary black holes are the most promising candidate sources for the first generation of earth-based ...
We investigate the dynamics and gravitational-wave (GW) emission in the binary merger of equal-mass ...
We discuss the transition from quasi-circular inspiral to plunge of a system of two nonrotating blac...
We study the fully nonlinear dynamical evolution of binary black hole data, whose orbital parameters...
Coalescing binary black hole mergers are expected to be the strongest gravitational wave sources for...
We discuss the properties of the effective-one-body (EOB) multipolar gravitational waveform emitted ...
Spectacular breakthroughs in numerical relativity now make it possible to compute spacetime dynamic...
31 pages, 7 tables, and 13 figuresWe investigate the non-adiabatic dynamics of spinning black hole b...
We present preliminary results from self-consistent, high resolution direct N-body simulations of ma...
We compute and analyze the gravitational waveform emitted to future null infinity by a system of two...
Gravitational radiation arising from the inspiral and merger of binary black holes (BBH's) is a prom...
Over the last few years enormous progress has been made in the numerical description of the inspiral...
Using two recent techniques giving non-perturbative re-summed estimates of the damping and of the co...
We study the coalescence of non-spinning binary black holes from the innermost stable circular orbit...
We study the transition from inspiral to plunge in general relativity by computing gravitational wav...
Binary black holes are the most promising candidate sources for the first generation of earth-based ...
We investigate the dynamics and gravitational-wave (GW) emission in the binary merger of equal-mass ...
We discuss the transition from quasi-circular inspiral to plunge of a system of two nonrotating blac...
We study the fully nonlinear dynamical evolution of binary black hole data, whose orbital parameters...
Coalescing binary black hole mergers are expected to be the strongest gravitational wave sources for...
We discuss the properties of the effective-one-body (EOB) multipolar gravitational waveform emitted ...
Spectacular breakthroughs in numerical relativity now make it possible to compute spacetime dynamic...
31 pages, 7 tables, and 13 figuresWe investigate the non-adiabatic dynamics of spinning black hole b...
We present preliminary results from self-consistent, high resolution direct N-body simulations of ma...
We compute and analyze the gravitational waveform emitted to future null infinity by a system of two...
Gravitational radiation arising from the inspiral and merger of binary black holes (BBH's) is a prom...
Over the last few years enormous progress has been made in the numerical description of the inspiral...