We expand upon our previous analysis of numerical moving-puncture simulations of the Schwarzschild spacetime. We present a derivation of the family of analytic stationary 1 + log foliations of the Schwarzschild solution, and outline a transformation to isotropic coordinates. We discuss in detail the numerical evolution of standard Schwarzschild puncture data, and the new time-independent 1 + log data. Finally, we demonstrate that the moving-puncture method can locate the appropriate stationary geometry in a robust manner when a numerical code alternates between two forms of 1 + log slicing during a simulation
We describe a procedure for constructing initial data for boosted black holes in the moving-puncture...
Recent demonstrations of unexcised, puncture black holes traversing freely across computational grid...
We present single and binary black-hole simulations that follow the “moving-puncture” paradigm of si...
We expand upon our previous analysis of numerical moving-puncture simulations of the Schwarzschild s...
Currently the most popular method to evolve black-hole binaries is the ``moving puncture'' method. I...
The ``moving puncture'' technique has led to dramatic advancements in the numerical simulations of b...
The puncture method for black holes in numerical relativity has recently been extended to punctures ...
Significant advances in numerical simulations of Black holes binaries have recently been achieved us...
The moving-puncture technique has led to dramatic advancements in the numerical simulations of bin...
When simulating the inspiral and coalescence of a binary black-hole system, special care needs to be...
The most popular method to construct initial data for black-hole-binary simulations is the puncture ...
The strong-field region inside a black hole needs special attention during numerical simulation. One...
Recent demonstrations of unexcised black holes traversing across computational grids represent a sig...
We describe a procedure for constructing initial data for boosted black holes in the moving-puncture...
Recent demonstrations of unexcised, puncture black holes traversing freely across computational grid...
We present single and binary black-hole simulations that follow the “moving-puncture” paradigm of si...
We expand upon our previous analysis of numerical moving-puncture simulations of the Schwarzschild s...
Currently the most popular method to evolve black-hole binaries is the ``moving puncture'' method. I...
The ``moving puncture'' technique has led to dramatic advancements in the numerical simulations of b...
The puncture method for black holes in numerical relativity has recently been extended to punctures ...
Significant advances in numerical simulations of Black holes binaries have recently been achieved us...
The moving-puncture technique has led to dramatic advancements in the numerical simulations of bin...
When simulating the inspiral and coalescence of a binary black-hole system, special care needs to be...
The most popular method to construct initial data for black-hole-binary simulations is the puncture ...
The strong-field region inside a black hole needs special attention during numerical simulation. One...
Recent demonstrations of unexcised black holes traversing across computational grids represent a sig...
We describe a procedure for constructing initial data for boosted black holes in the moving-puncture...
Recent demonstrations of unexcised, puncture black holes traversing freely across computational grid...
We present single and binary black-hole simulations that follow the “moving-puncture” paradigm of si...