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Swift pointing and gravitational-wave bursts from gamma-ray burst events

机译:来自伽马射线爆发事件的快速指向和引力波爆发

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摘要

The currently accepted model for gamma-ray burst phenomena involves the violent formation of a rapidly rotating solar-mass black hole. Gravitational waves should be associated with the black-hole formation, and their detection would permit this model to be tested. Even upper limits on the gravitational-wave strength associated with gamma-ray bursts could constrain the gamma-ray burst model. This requires joint observations of gamma-ray burst events with gravitational and gamma-ray detectors. Here we examine how the quality of an upper limit on the gravitational-wave strength associated with gamma-ray bursts depends on the relative orientation of the gamma-ray-burst and gravitational-wave detectors, and apply our results to the particular case of the Swift Burst-Alert Telescope (BAT) and the LIGO gravitational-wave detectors. A result of this investigation is a science-based 'figure of merit' that can be used, together with other mission constraints, to optimize the pointing of the Swift telescope for the detection of gravitational waves associated with gamma-ray bursts. [References: 8]
机译:目前公认的伽马射线爆发现象模型涉及快速旋转的太阳质量黑洞的剧烈形成。引力波应与黑洞形成有关,并且它们的探测将允许对该模型进行测试。甚至与伽马射线爆发有关的引力波强度的上限也可能会限制伽马射线爆发模型。这就需要用重力和伽马射线探测器联合观测伽马射线爆发事件。在这里,我们检查与伽马射线暴相关的引力波强度上限的质量如何取决于伽马射线暴和引力波探测器的相对方向,并将我们的结果应用于特定情况下Swift Burst-Alert望远镜(BAT)和LIGO重力波探测器。这项研究的结果是基于科学的“功绩”,它可以与其他任务限制一起用于优化Swift望远镜的指向,以检测与伽马射线暴相关的引力波。 [参考:8]

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