We present new numerical algorithms for the coupled Einstein- perfect-fluid system in axisymmetry. Our framework uses a foliation based on a family of light cones, emanating from a regular center, and terminating at future null infinity. This coordinate system is well adapted to the study of the dynamical spacetimes associated with isolated relativistic compact objects such as neutron stars. In particular, the approach allows the unambiguous extraction of gravitational waves at future null infinity and avoids spurious outer boundary reflections. The code can accurately maintain long-term stability of polytropic equilibrium models of relativistic stars. We demonstrate global energy conservation in a strongly perturbed neutron star spacetime,...
International audienceEquilibria of binary neutron stars in close circular orbits are computed numer...
Sorry, the full text of this article is not available here. Please click on the alternative location...
Neutron stars are some of the most fascinating objects in Nature. Essentially all aspects of physics...
We present new numerical algorithms for the coupled Einstein-perfect fluid system in axisymmetry. Ou...
Gravitational waves from oscillating neutron stars in axial symmetry are studied performing numerica...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
We describe an axisymmetric general relativistic code for rotational core collapse. The code evolve...
We consider the perturbations of a relativistic star as an initial-value problem. Having discussed t...
We consider the perturbations of a relativistic star as an initial-value problem. Having discussed t...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
We study the interaction of massless scalar fields with relativistic stars by means of fully dynamic...
We consider the perturbations of a relativistic star as an initial-value problem. Having discussed t...
International audienceEquilibria of binary neutron stars in close circular orbits are computed numer...
International audienceEquilibria of binary neutron stars in close circular orbits are computed numer...
International audienceEquilibria of binary neutron stars in close circular orbits are computed numer...
Sorry, the full text of this article is not available here. Please click on the alternative location...
Neutron stars are some of the most fascinating objects in Nature. Essentially all aspects of physics...
We present new numerical algorithms for the coupled Einstein-perfect fluid system in axisymmetry. Ou...
Gravitational waves from oscillating neutron stars in axial symmetry are studied performing numerica...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
We describe an axisymmetric general relativistic code for rotational core collapse. The code evolve...
We consider the perturbations of a relativistic star as an initial-value problem. Having discussed t...
We consider the perturbations of a relativistic star as an initial-value problem. Having discussed t...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
We study the interaction of massless scalar fields with relativistic stars by means of fully dynamic...
We consider the perturbations of a relativistic star as an initial-value problem. Having discussed t...
International audienceEquilibria of binary neutron stars in close circular orbits are computed numer...
International audienceEquilibria of binary neutron stars in close circular orbits are computed numer...
International audienceEquilibria of binary neutron stars in close circular orbits are computed numer...
Sorry, the full text of this article is not available here. Please click on the alternative location...
Neutron stars are some of the most fascinating objects in Nature. Essentially all aspects of physics...