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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Python Open source Waveform ExtractoR (POWER): an open source, Python package to monitor and post-process numerical relativity simulations
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Python Open source Waveform ExtractoR (POWER): an open source, Python package to monitor and post-process numerical relativity simulations

机译:Python开源波形提取器(POWER):开源,Python包监控和后处理后的数字相对性模拟

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摘要

Numerical simulations of Einstein's field equations provide unique insights into the physics of compact objects moving at relativistic speeds, and which are driven by strong gravitational interactions. Numerical relativity has played a key role to firmly establish gravitational wave astrophysics as a new field of research, and it is now paving the way to establish whether gravitational wave radiation emitted from compact binary mergers is accompanied by electromagnetic and astroparticle counterparts. As numerical relativity continues to blend in with routine gravitational wave data analyses to validate the discovery of gravitational wave events, it is essential to develop open source tools to streamline these studies. Motivated by our own experience as users and developers of the open source, community software, the Einstein Toolkit, we present an open source, Python package that is ideally suited to monitor and post-process the data products of numerical relativity simulations, and compute the gravitational wave strain at future null infinity in high performance environments. We showcase the application of this new package to post-process a large numerical relativity catalog and extract higher-order waveform modes from numerical relativity simulations of eccentric binary black hole mergers and neutron star mergers. This new software fills a critical void in the arsenal of tools provided by the Einstein Toolkit consortium to the numerical relativity community.
机译:Einstein现场方程的数值模拟为以相对论速度移动的紧凑型物体物理提供了独特的见解,并且由强烈的引力相互作用驱动。数值相对论已经牢固地建立引力波天体物理学作为一种新的研究领域,它现在铺平了从电磁和星形上伴随着电磁和星形上的引力波辐射的方式。随着数值相对论继续与常规重力波数据分析混合以验证引力波事件的发现,必须开发开源工具以简化这些研究。通过我们自己的经验,作为开源的用户和开发人员,社区软件,Einstein Toolkit,我们介绍了一个非常适合监控和后处理数字相对性模拟的数据产品的Python包,并计算在未来零空型中的引力波应变在高性能环境中。我们展示了这个新包的应用到后处理了大型数字相对性目录,并从偏心二进制黑洞并购中的数值相对论模拟中提取高阶波形模式。这款新软件在Einstein Toolkit Consortium提供的工具的武器中填补了一个关键的void到数值相对性社区。

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