The properties of compact binaries, such as masses and spins, are imprinted in the gravitational-waves they emit and can be measured using parameterised waveform models. Accurately and efficiently describing the complicated precessional dynamics of the various angular momenta of the system in these waveform models is the object of active investigation. One of the key models extensively used in the analysis of LIGO and Virgo data is the single-precessing-spin waveform model IMRPhenomPv2. In this article we present a new model IMRPhenomPv3 which includes the effects of two independent spins in the precession dynamics. Whereas IMRPhenomPv2 utilizes a single-spin frequency-dependent post-Newtonian rotation to describe precession effects, the im...
In Ref. [1], the properties of the first gravitational wave detected by LIGO, GW150914, were measure...
We present IMRPhenomTPHM, a phenomenological model for the gravitational wave signals emitted by the...
As gravitational-wave detectors become more sensitive and broaden their frequency bandwidth, we will...
The properties of compact binaries, such as masses and spins, are imprinted in the gravitational wav...
Gravitational waves (GWs) emitted by generic black-hole binaries show a rich structure that directly...
Gravitational-wave (GW) signals from coalescing compact binaries carry enormous information about th...
Estimates of the source parameters of gravitational-wave (GW) events produced by compact binary merg...
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...
There have been a number of gravitational wave events detected by the LIGO and Virgo detectors in re...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
The coalescence of two stellar mass black holes is regarded as one of the most promising sources fo...
This paper presents updated estimates of source parameters for GW150914, a binary black-hole coalesc...
We present phenompnr, a frequency-domain phenomenological model of the gravitational-wave signal fro...
In Ref. [1], the properties of the first gravitational wave detected by LIGO, GW150914, were measure...
We present IMRPhenomTPHM, a phenomenological model for the gravitational wave signals emitted by the...
As gravitational-wave detectors become more sensitive and broaden their frequency bandwidth, we will...
The properties of compact binaries, such as masses and spins, are imprinted in the gravitational wav...
Gravitational waves (GWs) emitted by generic black-hole binaries show a rich structure that directly...
Gravitational-wave (GW) signals from coalescing compact binaries carry enormous information about th...
Estimates of the source parameters of gravitational-wave (GW) events produced by compact binary merg...
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...
There have been a number of gravitational wave events detected by the LIGO and Virgo detectors in re...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
The coalescence of two stellar mass black holes is regarded as one of the most promising sources fo...
This paper presents updated estimates of source parameters for GW150914, a binary black-hole coalesc...
We present phenompnr, a frequency-domain phenomenological model of the gravitational-wave signal fro...
In Ref. [1], the properties of the first gravitational wave detected by LIGO, GW150914, were measure...
We present IMRPhenomTPHM, a phenomenological model for the gravitational wave signals emitted by the...
As gravitational-wave detectors become more sensitive and broaden their frequency bandwidth, we will...