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Love in extrema ratio

机译:在极值比例中的爱

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摘要

The tidal deformability of a self-gravitating object leaves an imprint on the gravitational-wave signal of an inspiral which is paramount to measure the internal structure of the binary components. We unveil here a surprisingly unnoticed effect: in the extreme mass-ratio limit the tidal Love number of the central object (i.e. the quadrupole moment induced by the tidal field of its companion) affects the gravitational waveform at the leading order in the mass ratio. This effect acts as a magnifying glass for the tidal deformability of supermassive objects but was so far neglected, probably because the tidal Love numbers of a black hole (the most natural candidate for a compact supermassive object) are identically zero. We argue that extreme mass-ratio inspirals detectable by the future laser interferometric space antenna (LISA) mission might place constraints on the tidal Love numbers of the central object which are roughly eight orders of magnitude more stringent than current ones on neutron stars, potentially probing all models of black hole mimickers proposed so far.
机译:自我重力物体的潮汐可变形性留下了对励志的引力波信号的印记,这是测量二元组件的内部结构的最重要的。我们在这里推出了一个令人惊讶的不受注意的效果:在极端质量比率限制中央物体的潮汐数(即,其伴侣的潮汐场引起的四极血管矩)影响质量比中的前导顺序的重力波形。这种效果充当过度分类物体的潮汐可变形性的放大镜,但到目前为止被忽视,可能是因为黑洞的潮汐相对数(紧凑型超大物对象的最自然候选者)相同为零。我们认为未来激光干涉空间天线(LISA)任务可检测到的极端质量比率促进人可能会对中央物体的潮汐相对数量的限制来放置约束,这比中子恒星上的当前速度大约是八个数量级,可能探测到目前为止提出的所有型号的黑洞模仿者。

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