To detect the gravitational-wave (GW) signal from binary neutron stars and extract information about the equation of state of matter at nuclear density, it is necessary to match the signal with a bank of accurate templates. We present the two longest (to date) general-relativistic simulations of equal-mass binary neutron stars with different compactnesses, C=0.12 and C=0.14, and compare them with a tidal extension of the effective-one-body (EOB)model. The typical numerical phasing errors over the $\simeq 22$ GW cycles are $\Delta \phi\simeq \pm 0.24$ rad. By calibrating only one parameter (representing a higher-order amplification of tidal effects), the EOB model can reproduce, within the numerical error, the two numerical waveforms essenti...
International audienceThe gravitational-wave signal from inspiralling neutron-star-neutron-star (or ...
We report results of numerical relativity simulations of binary neutron star mergers. We perform sim...
Abstract Using the analytical effective-one-body model and nonlinear 3+1 numerical relativity simula...
Binary neutron-star systems represent one of the most promising sources of gravitational waves. In o...
To detect the gravitational-wave (GW) signal from binary neutron stars and extract information about...
The data analysis of the gravitational wave signals emitted by coalescing neutron star binaries req...
The data analysis of the gravitational wave signals emitted by coalescing neutron star binaries requ...
We present a detailed comparison between tidal effective-one-body (EOB) models and new state-of-the-...
Extending our previous studies, we perform high-resolution simulations of inspiraling binary neutron...
Accurate and fast gravitational waveform (GW) models are essential to extract information about the ...
We construct closed-form gravitational waveforms (GWs) with tidal effects for the coalescence and me...
Extracting the unique information on ultradense nuclear matter from the gravitational waves emitted ...
Extracting the unique information on ultradense nuclear matter from the gravitational waves emitted ...
The early part of the gravitational wave signal of binary neutron-star inspirals can potentially yie...
Gravitational waves from binary neutron star (BNS) and black hole/neutron star (BHNS) inspirals are ...
International audienceThe gravitational-wave signal from inspiralling neutron-star-neutron-star (or ...
We report results of numerical relativity simulations of binary neutron star mergers. We perform sim...
Abstract Using the analytical effective-one-body model and nonlinear 3+1 numerical relativity simula...
Binary neutron-star systems represent one of the most promising sources of gravitational waves. In o...
To detect the gravitational-wave (GW) signal from binary neutron stars and extract information about...
The data analysis of the gravitational wave signals emitted by coalescing neutron star binaries req...
The data analysis of the gravitational wave signals emitted by coalescing neutron star binaries requ...
We present a detailed comparison between tidal effective-one-body (EOB) models and new state-of-the-...
Extending our previous studies, we perform high-resolution simulations of inspiraling binary neutron...
Accurate and fast gravitational waveform (GW) models are essential to extract information about the ...
We construct closed-form gravitational waveforms (GWs) with tidal effects for the coalescence and me...
Extracting the unique information on ultradense nuclear matter from the gravitational waves emitted ...
Extracting the unique information on ultradense nuclear matter from the gravitational waves emitted ...
The early part of the gravitational wave signal of binary neutron-star inspirals can potentially yie...
Gravitational waves from binary neutron star (BNS) and black hole/neutron star (BHNS) inspirals are ...
International audienceThe gravitational-wave signal from inspiralling neutron-star-neutron-star (or ...
We report results of numerical relativity simulations of binary neutron star mergers. We perform sim...
Abstract Using the analytical effective-one-body model and nonlinear 3+1 numerical relativity simula...