arXiv · gr-qc/9807047
Cauchy-perturbative matching and outer boundary conditions: computational studies
Abstract
We present results from a new technique which allows extraction of gravitational radiation information from a generic three-dimensional numerical relativity code and provides stable outer boundary conditions. In our approach we match the solution of a Cauchy evolution of the nonlinear Einstein field equations to a set of one-dimensional linear equations obtained through perturbation techniques over a curved background. We discuss the validity of this approach in the case of linear and mildly nonlinear gravitational waves and show how a numerical module developed for this purpose is able to provide an accurate and numerically convergent description of the gravitational wave propagation and a stable numerical evolution.
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Luciano Rezzolla, Andrew M. Abrahams, Richard A. Matzner, Mark E. Rupright, Stuart L. Shapiro. 1998-07-17. Cauchy-perturbative matching and outer boundary conditions: computational studies. https://doi.org/10.1103/physrevd.59.064001
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