论文标题

改进了高精度数值相对性波形的凯奇特征演化系统

Improved Cauchy-characteristic evolution system for high-precision numerical relativity waveforms

论文作者

Moxon, Jordan, Scheel, Mark A., Teukolsky, Saul A.

论文摘要

我们对cauchy-tharacteristic进化过程提出了一些改进,该过程从数值相对性模拟中生成了$ \ Mathcal {i}^+$以$ \ Mathcal {I}^+$生成高保真重力波形。 Cauchy-Characteristic Evolution结合了基于Cauchy Slices的Einstein场方程的内部解决方案,以及基于null切片的外部解决方案,该解决方案延伸至$ \ MATHCAL {I}^+$。我们改进的算法的基础是一种综合方法,可以处理内部库奇进化的任意指定的坐标与外部特征进化的唯一(到BMS转换)的唯一(to bms转换)之间的量规变换。我们提出了一组重新制定的特征演化方程,可以更好地适应数值实施。此外,我们开发了一种方法来确保特征演化过程中体积中使用的角坐标是渐近惯性的。这为扩展的波形输出提供了直接的途径,并可以保证避免纯粹的对数依赖性,这在特征演化方程的先前光谱实现中造成了麻烦。我们构建了一组与特征演化中使用的键样坐标系兼容的Weyl标量,并确定建议的渐近级别量表中的简单,易于实现的形式。

We present several improvements to the Cauchy-characteristic evolution procedure that generates high-fidelity gravitational waveforms at $\mathcal{I}^+$ from numerical relativity simulations. Cauchy-characteristic evolution combines an interior solution of the Einstein field equations based on Cauchy slices with an exterior solution based on null slices that extend to $\mathcal{I}^+$. The foundation of our improved algorithm is a comprehensive method of handling the gauge transformations between the arbitrarily specified coordinates of the interior Cauchy evolution and the unique (up to BMS transformations) Bondi-Sachs coordinate system of the exterior characteristic evolution. We present a reformulated set of characteristic evolution equations better adapted to numerical implementation. In addition, we develop a method to ensure that the angular coordinates used in the volume during the characteristic evolution are asymptotically inertial. This provides a direct route to an expanded set of waveform outputs and is guaranteed to avoid pure-gauge logarithmic dependence that has caused trouble for previous spectral implementations of the characteristic evolution equations. We construct a set of Weyl scalars compatible with the Bondi-like coordinate systems used in characteristic evolution, and determine simple, easily implemented forms for the asymptotic Weyl scalars in our suggested set of coordinates.

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