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首页> 外文期刊>Living Reviews in Relativity >Testing General Relativity with Low-Frequency, Space-Based Gravitational-Wave Detectors
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Testing General Relativity with Low-Frequency, Space-Based Gravitational-Wave Detectors

机译:使用低频,空基重力波检测器测试广义相对论

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摘要

We review the tests of general relativity that will become possible with space-based gravitational-wave detectors operating in the ~ 10^{-5} – 1 Hz low-frequency band. The fundamental aspects of gravitation that can be tested include the presence of additional gravitational fields other than the metric; the number and tensorial nature of gravitational-wave polarization states; the velocity of propagation of gravitational waves; the binding energy and gravitational-wave radiation of binaries, and therefore the time evolution of binary inspirals; the strength and shape of the waves emitted from binary mergers and ringdowns; the true nature of astrophysical black holes; and much more. The strength of this science alone calls for the swift implementation of a space-based detector; the remarkable richness of astrophysics, astronomy, and cosmology in the low-frequency gravitational-wave band make the case even stronger.
机译:我们回顾了在〜10 ^ {-5} – 1 Hz低频频带中运行的天基重力波探测器将可能实现的广义相对论测试。可以测试的重力基本方面包括度量标准以外的其他重力场的存在;重力波极化态的数量和张量性质;引力波的传播速度;二进制的结合能和引力波辐射,因此二进制吸气的时间演化;二元合并和衰败所产生的波的强度和形状;天体物理黑洞的真实性质;以及更多。单单这门科学的力量就要求迅速实施天基探测器。低频引力波带中丰富的天体物理学,天文学和宇宙学特性使情况变得更加牢固。

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