We present numerical solutions of the hyperboloidal initial value problem for a self-gravitating scalar field in spherical symmetry, using a variety of standard hyperbolic slicing and shift conditions that we adapt to our hyperboloidal setup. We work in the framework of conformal compactification, and study both evolutions that employ the preferred conformal gauge, which simplifies the formal singularities of our equations at null infinity, and evolutions without this simplification. In previous work we have used a staggered grid, which excludes null infinity, while now we include the option of placing a gridpoint directly at null infinity.We use both the generalized BSSN and conformal Z4 formulations of the Einstein equations, study the ef...
We present a new evolution system for Einstein’s field equations which is based on tetrad fields and...
We present a new evolution system for Einstein’s field equations which is based on tetrad fields and...
We use the conformal approach to numerical relativity to evolve hyperboloidal gravitational wave dat...
We present numerical solutions of the hyperboloidal initial value problem for a self-gravitating sca...
We present numerical solutions of the hyperboloidal initial value problem for a self-gravitating sca...
The hyperboloidal initial value problem is addressed in the context of Numerical Relativity, motivat...
We consider an approach to the hyperboloidal evolution problem based on the Einstein equations writt...
We consider the hyperboloidal initial value problem for the Einstein equations in numerical relativi...
We consider the hyperboloidal initial value problem for the Einstein equations in numerical relativi...
We consider the hyperboloidal initial value problem for the Einstein equations in numerical relativi...
We consider the hyperboloidal initial value problem for the Einstein equations in numerical relativi...
We discuss the hyperboloidal evolution problem in general relativity from a numerical perspective, a...
We study in spherical symmetry the conformal compactification for hyperboloidal foliations with nonv...
We consider an approach to the hyperboloidal evolution problem based on the Einstein equations writt...
We consider an approach to the hyperboloidal evolution problem based on the Einstein equations writt...
We present a new evolution system for Einstein’s field equations which is based on tetrad fields and...
We present a new evolution system for Einstein’s field equations which is based on tetrad fields and...
We use the conformal approach to numerical relativity to evolve hyperboloidal gravitational wave dat...
We present numerical solutions of the hyperboloidal initial value problem for a self-gravitating sca...
We present numerical solutions of the hyperboloidal initial value problem for a self-gravitating sca...
The hyperboloidal initial value problem is addressed in the context of Numerical Relativity, motivat...
We consider an approach to the hyperboloidal evolution problem based on the Einstein equations writt...
We consider the hyperboloidal initial value problem for the Einstein equations in numerical relativi...
We consider the hyperboloidal initial value problem for the Einstein equations in numerical relativi...
We consider the hyperboloidal initial value problem for the Einstein equations in numerical relativi...
We consider the hyperboloidal initial value problem for the Einstein equations in numerical relativi...
We discuss the hyperboloidal evolution problem in general relativity from a numerical perspective, a...
We study in spherical symmetry the conformal compactification for hyperboloidal foliations with nonv...
We consider an approach to the hyperboloidal evolution problem based on the Einstein equations writt...
We consider an approach to the hyperboloidal evolution problem based on the Einstein equations writt...
We present a new evolution system for Einstein’s field equations which is based on tetrad fields and...
We present a new evolution system for Einstein’s field equations which is based on tetrad fields and...
We use the conformal approach to numerical relativity to evolve hyperboloidal gravitational wave dat...