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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Gravitational-wave astrophysics from neutron star inspiral and coalescence
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Gravitational-wave astrophysics from neutron star inspiral and coalescence

机译:来自中子星的引力波天体物理学&聚结

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Prior to the observation of a double neutron star inspiral and merger, its possible implications were striking. Events whose light and gravitational waves are simultaneously detected could resolve the 50-year mystery of the origin of short gamma-ray bursts; they might provide strong evidence for (or against) mergers as the main source of half the heaviest elements (the r-process elements); and they could give an independent measurement of the Hubble constant. The closest events can also address a primary goal of gravitational-wave astrophysics: From the imprint of tides on inspiral waveforms, one can find the radius and tidal distortion of the inspiraling stars and infer the behavior of cold matter above nuclear density. Remarkably, the first observation of the inspiral and coalescence of a double neutron star system was accompanied by a gamma-ray burst and then an array of electromagnetic counterparts, and the combined effort of the gravitational-wave and astronomy communities has led to dramatic advances along all of these anticipated avenues of multimessenger astrophysics.
机译:在观察双中子星的升高和合并之前,可能的影响是引人注目的。同时检测到其光和引力波的事件可以解决短伽马射线爆发的起源的50年代谜;他们可能提供强有力的证据(或反对)合并作为最重子的主要来源(R-Process Elements);他们可以对霍布尔常数进行独立测量。最接近的事件还可以解决引力波天体物理学的主要目标:从潮汐的印记,人们可以找到普遍存器的半径和潮汐变形,并推断出高于核密度的冷物行为。值得注意的是,对双重中子星系的Inspiral和聚结的首次观察伴随着γ射线突发,然后是一系列电磁对应物,引力波和天文社区的综合努力导致了戏剧性的进展所有这些预期的多米列特天体物理学途径。

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