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A robust test of general relativity in space

机译:太空广义相对论的可靠测试

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摘要

LISA may make it possible to test the black-hole uniqueness theorems of general relativity, also called the no-hair theorems, by Ryan's method of detecting the quadrupole moment of a black hole using high-mass-ratio inspirals. This test can be performed more robustly by observing inspirals in earlier stages, where the simplifications used in making inspiral predictions by the perturbative and post-Newtonian methods are more nearly correct. Current concepts for future missions such as DECIGO and BBO would allow even more stringent tests by this same method. Recently discovered evidence supports the existence of intermediate-mass black holes (IMBHs). Inspirals of binary systems with one IMBH and one stellar-mass black hole would fall into the frequency band of proposed maximum sensitivity for DECIGO and BBO. This would enable us to perform the Ryan test more precisely and more robustly. We explain why tests based on observations earlier in the inspiral are more robust and provide preliminary estimates of possible optimal future observations.
机译:LISA可以通过赖安(Ryan)使用高质量比率吸积检测黑洞的四极矩的方法来测试广义相对论的黑洞唯一性定理,也称为无毛定理。通过在较早阶段观察Inspiral,可以更可靠地执行此测试,在这种情况下,通过摄动和牛顿后方法进行Inspiral预测时使用的简化几乎是正确的。诸如DECIGO和BBO之类的未来任务的当前概念将允许通过同一方法进行更严格的测试。最近发现的证据支持存在中等质量黑洞(IMBH)。具有一个IMBH和一个恒星质量黑洞的二元系统的灵感将落入为DECIGO和BBO建议的最大灵敏度的频带。这将使我们能够更精确,更可靠地执行Ryan测试。我们解释了为什么基于吸气管中较早观测值的测试更可靠,并提供可能的最佳未来观测值的初步估计。

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