This is the second in a series of papers on the construction and validation of a three-dimensional code for the solution of the coupled system of the Einstein equations and of the general relativistic hydrodynamic equations, and on the application of this code to problems in general relativistic astrophysics. In particular, we report on the accuracy of our code in the long-term dynamical evolution of relativistic stars and on some new physics results obtained in the process of code testing. The following aspects of our code have been validated: the generation of initial data representing perturbed general relativistic polytropic models (both rotating and nonrotating), the long-term evolution of relativistic stellar models, and the coupling ...
We present the derivation of hydrodynamical equations for a perfect fluid in General Relativity, wit...
Numerical results from a study of boson stars under nonspherical perturbations using a fully general...
A new general-relativistic algorithm is developed to study the nonlinear evolution of scalar (densit...
This is the second in a series of papers on the construction and validation of a three-dimensional c...
This is the second in a series of papers on the construction and validation of a three-dimensional c...
We present a new three-dimensional general relativistic hydrodynamics code, the Whisky code. This co...
We present a new three-dimensional general relativistic hydrodynamics code, the Whisky code. This co...
We present a new three-dimensional fully general-relativistic hydrodynamics code using high-resoluti...
In this thesis I consider three different projects in numerical relativity. The first one is a study...
We describe an axisymmetric general relativistic code for rotational core collapse. The code evolve...
We solve Einstein's field equations coupled to relativistic hydrodynamics in full 3+1 general relati...
International audienceA new numerical code for computing stationary axisymmetric rapidly rotating st...
International audienceA new numerical code for computing stationary axisymmetric rapidly rotating st...
We present new numerical algorithms for the coupled Einstein- perfect-fluid system in axisymmetry. O...
International audienceWe present the derivation of hydrodynamical equations for a perfect fluid in G...
We present the derivation of hydrodynamical equations for a perfect fluid in General Relativity, wit...
Numerical results from a study of boson stars under nonspherical perturbations using a fully general...
A new general-relativistic algorithm is developed to study the nonlinear evolution of scalar (densit...
This is the second in a series of papers on the construction and validation of a three-dimensional c...
This is the second in a series of papers on the construction and validation of a three-dimensional c...
We present a new three-dimensional general relativistic hydrodynamics code, the Whisky code. This co...
We present a new three-dimensional general relativistic hydrodynamics code, the Whisky code. This co...
We present a new three-dimensional fully general-relativistic hydrodynamics code using high-resoluti...
In this thesis I consider three different projects in numerical relativity. The first one is a study...
We describe an axisymmetric general relativistic code for rotational core collapse. The code evolve...
We solve Einstein's field equations coupled to relativistic hydrodynamics in full 3+1 general relati...
International audienceA new numerical code for computing stationary axisymmetric rapidly rotating st...
International audienceA new numerical code for computing stationary axisymmetric rapidly rotating st...
We present new numerical algorithms for the coupled Einstein- perfect-fluid system in axisymmetry. O...
International audienceWe present the derivation of hydrodynamical equations for a perfect fluid in G...
We present the derivation of hydrodynamical equations for a perfect fluid in General Relativity, wit...
Numerical results from a study of boson stars under nonspherical perturbations using a fully general...
A new general-relativistic algorithm is developed to study the nonlinear evolution of scalar (densit...