We present a new phenomenological gravitational waveform model for the inspiral and coalescence of non-precessing spinning black hole binaries. Our approach is based on a frequency domain matching of post-Newtonian inspiral waveforms with numerical relativity based binary black hole coalescence waveforms. We quantify the various possible sources of systematic errors that arise in matching post-Newtonian and numerical relativity waveforms, and we use a matching criteria based on minimizing these errors; we find that the dominant source of errors are those in the post-Newtonian waveforms near the merger. An analytical formula for the dominant mode of the gravitational radiation of non-precessing black hole binaries is presented that captures ...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
General relativity predicts the gravitational radiation signatures of mergers of compact binaries, s...
General relativity predicts the gravitational radiation signatures of mergers of compact binaries, s...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from non-precess...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
General relativity predicts the gravitational radiation signatures of mergers of compact binaries, s...
General relativity predicts the gravitational radiation signatures of mergers of compact binaries, s...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from non-precess...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...