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General Relativistic Simulations of Binary Neutron Star Mergers

机译:二元中子明星兼并的一般相对论模拟

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Binary neutron star mergers are one of the possible candidates for the central engine of short gamma-ray bursts (GRBs) and they are also powerful sources of gravitational waves. We have used our fully general relativistic hydrodynamical code Whisky to investigate the merger of binary neutron star systems and we have in particular studied the properties of the tori that can be formed by these systems, their possible connection with the engine of short GRBs and the gravitational wave signals that detectors such as advanced LIGO will be able to detect. We have also shown how the mass of the torus varies as a function of the total mass of the neutron stars composing the binary and of their mass ratio and we have found that tori sufficiently massive to power short GRBs can indeed be formed.
机译:二元中子星兼并是短伽马射线爆发(GRBS)的中央发动机的可能候选者之一,它们也是强大的引力波源。我们已经使用了我们全面的相对论的流体动力学代码威士忌来研究二元中子星系的合并,特别是研究了这些系统可以形成的波特的性质,它们与短grbs发动机的可能连接和引力波浪信号,诸如高级Ligo等探测器将能够检测。我们还示出了圆环的质量如何随着组成二进制的中子恒星的总质量和它们的质量比而变化,并且我们已经发现可以确实形成足够大量的电力短GRB的TORI。

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