In a previous paper, a binary black hole four-metric was presented in a post-Newtonian corotating coordinate system valid only up to the holes' apparent horizons. In this paper, I define an ingoing coordinate transformation that extends this corotating coordinate system through the holes' horizons and into their interiors. The motivation for using ingoing coordinates is that numerical simulations of black holes require the computational grid to extend inside the horizons. The coordinate transformation presented here makes the binary black hole four-metric suitable as a source of initial data for numerical simulations
We describe a numerical grid generating procedure to construct new classes of orthogonal coordinate ...
With the goal of taking a step toward the construction of astrophysically realistic initial data for...
We present results from a new code for binary black hole evolutions using the moving-puncture approa...
In a previous paper, a binary black hole four-metric was presented in a post-Newtonian corotating co...
An approximate solution to Einstein's equations representing twowidely-separated non-rotating black ...
This fourth release of the RIT public catalog of numerical relativity black-hole-binary waveforms \u...
We describe a numerical grid generating procedure to construct new classes of orthogonal coordinate ...
We describe a grid generation procedure designed to construct new classes of orthogonal coordinate s...
Geodesics (by definition) have an intrinsic 4-acceleration zero. However, when expressed in terms of...
Geodesics (by definition) have an intrinsic 4-acceleration zero. However, when expressed in terms of...
We describe a grid generation procedure designed to construct new classes of orthogonal coordinate s...
We describe a grid generation procedure designed to construct new classes of orthogonal coordinate s...
Black holes are real astrophysical objects, but their interiors are hidden and can only be “observed...
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
We describe a numerical grid generating procedure to construct new classes of orthogonal coordinate ...
With the goal of taking a step toward the construction of astrophysically realistic initial data for...
We present results from a new code for binary black hole evolutions using the moving-puncture approa...
In a previous paper, a binary black hole four-metric was presented in a post-Newtonian corotating co...
An approximate solution to Einstein's equations representing twowidely-separated non-rotating black ...
This fourth release of the RIT public catalog of numerical relativity black-hole-binary waveforms \u...
We describe a numerical grid generating procedure to construct new classes of orthogonal coordinate ...
We describe a grid generation procedure designed to construct new classes of orthogonal coordinate s...
Geodesics (by definition) have an intrinsic 4-acceleration zero. However, when expressed in terms of...
Geodesics (by definition) have an intrinsic 4-acceleration zero. However, when expressed in terms of...
We describe a grid generation procedure designed to construct new classes of orthogonal coordinate s...
We describe a grid generation procedure designed to construct new classes of orthogonal coordinate s...
Black holes are real astrophysical objects, but their interiors are hidden and can only be “observed...
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
We describe a numerical grid generating procedure to construct new classes of orthogonal coordinate ...
With the goal of taking a step toward the construction of astrophysically realistic initial data for...
We present results from a new code for binary black hole evolutions using the moving-puncture approa...