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周恩平. 数值相对论与双中子星并合[J]. 物理, 2019, 48(9): 573-580. DOI: 10.7693/wl20190905
引用本文: 周恩平. 数值相对论与双中子星并合[J]. 物理, 2019, 48(9): 573-580. DOI: 10.7693/wl20190905
ZHOU En-Ping. Numerical relativity and binary neutron star mergers[J]. PHYSICS, 2019, 48(9): 573-580. DOI: 10.7693/wl20190905
Citation: ZHOU En-Ping. Numerical relativity and binary neutron star mergers[J]. PHYSICS, 2019, 48(9): 573-580. DOI: 10.7693/wl20190905

数值相对论与双中子星并合

Numerical relativity and binary neutron star mergers

  • 摘要: 双中子星并合过程的引力波信号GW170817已经成功被LIGO直接探测,并合过程中的电磁对应体:短伽马射线暴GRB170817A以及光学、红外、紫外波段的千新星AT2017gfo也被多个天文台一同探测到,这标志着多信使天文学时代的开始。而数值相对论,即用数值模拟的方法研究双星并合的过程,在引力波探测、理解引力波源性质等方面起到举足轻重的作用。除此之外,数值相对论模拟的结果,也是我们理解千新星观测现象的重要工具。文章将回顾数值相对论建立、发展的历史,并介绍其在引力波探测、理解观测现象中所扮演的重要角色。

     

    Abstract: The direct detection of the inspiraling gravitational wave signal from the binary neutron star merger GW170817, by LIGO, together with the detection of its electromagnetic counterparts GRB170817A and AT2017gfo, announced the birth of the multi-messenger astronomy era. Numerical relativity, i.e. solving Einstein’s equation with numerical methods to simulate the binary merger process, played a crucial role in the detection of the gravitational wave signal as well as in interpreting the properties of the source. Moreover, the results of numerical relativity studies of binary neutron star mergers are essential for understanding the counterpart electromagnetic observations. In this article, the history and evolution of numerical relativity will be reviewed, as well as its role in gravitational wave detection and interpretation of the observations.

     

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