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引力波天体物理的头 5 年。

The first 5 years of gravitational-wave astrophysics.

机构信息

Laser Interferometer Gravitational-Wave Observatory Laboratory, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

Department of Physics and Kavli Institute for Astrophysics and Space Research, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Science. 2021 Jun 4;372(6546). doi: 10.1126/science.abc7397.

Abstract

Gravitational waves are ripples in spacetime generated by the acceleration of astrophysical objects; a direct consequence of general relativity, they were first directly observed in 2015. Here, I review the first 5 years of gravitational-wave detections. More than 50 gravitational-wave events have been found, emitted by pairs of merging compact objects such as neutron stars and black holes. These signals yield insights into the formation of compact objects and their progenitor stars, enable stringent tests of general relativity, and constrain the behavior of matter at densities higher than that of an atomic nucleus. Mergers that emit both gravitational and electromagnetic waves probe the formation of short gamma-ray bursts and the nucleosynthesis of heavy elements, and they measure the local expansion rate of the Universe.

摘要

引力波是由天体物理物体的加速产生的时空中的涟漪,是广义相对论的直接结果,它们于 2015 年首次被直接观测到。在这里,我回顾了引力波探测的头 5 年。已经发现了 50 多个引力波事件,它们是由合并的致密物体(如中子星和黑洞)对产生的。这些信号提供了对致密物体及其前身恒星形成的深入了解,使广义相对论得到了严格的检验,并限制了高于原子核密度的物质的行为。同时发出引力波和电磁波的合并事件探测了短伽马射线暴的形成和重元素的核合成,并测量了宇宙的局部膨胀率。

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