We present phenompnr, a frequency-domain phenomenological model of the gravitational-wave signal from binary-black-hole mergers that is tuned to numerical relativity (NR) simulations of precessing binaries. In many current waveform models, e.g., the “phenom” and “eobnr” families that have been used extensively to analyse LIGO-Virgo GW observations, analytic approximations are used to add precession effects to models of nonprecessing (aligned-spin) binaries, and it is only the aligned-spin models that are fully tuned to NR results. In phenompnr we incorporate precessing-binary numerical relativity results in two ways: (i) we produce the first numerical relativity-tuned model of the signal-based precession dynamics through merger and ringdown...
We describe a general procedure to generate spinning, precessing waveforms that include inspiral, me...
Spin precession is a generic feature of compact binary coalescences, which leaves clear imprints in ...
Binary black-hole systems are expected to be important sources of gravitational waves for upcoming g...
We present phenompnr, a frequency-domain phenomenological model of the gravitational-wave signal fro...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from non-precess...
There have been a number of gravitational wave events detected by the LIGO and Virgo detectors in re...
The properties of compact binaries, such as masses and spins, are imprinted in the gravitational wav...
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 describe a general procedure to generate spinning, precessing waveforms that include inspiral, me...
Spin precession is a generic feature of compact binary coalescences, which leaves clear imprints in ...
Binary black-hole systems are expected to be important sources of gravitational waves for upcoming g...
We present phenompnr, a frequency-domain phenomenological model of the gravitational-wave signal fro...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from non-precess...
There have been a number of gravitational wave events detected by the LIGO and Virgo detectors in re...
The properties of compact binaries, such as masses and spins, are imprinted in the gravitational wav...
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 describe a general procedure to generate spinning, precessing waveforms that include inspiral, me...
Spin precession is a generic feature of compact binary coalescences, which leaves clear imprints in ...
Binary black-hole systems are expected to be important sources of gravitational waves for upcoming g...