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Tests of general relativity with the binary black hole signals from the LIGO-Virgo catalog GWTC-1

机译:与Ligo-Virgo目录GWTC-1的二进制黑洞信号一般相对性的测试

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The detection of gravitational waves by Advanced LIGO and Advanced Virgo provides an opportunity to test general relativity in a regime that is inaccessible to traditional astronomical observations and laboratory tests. We present four tests of the consistency of the data with binary black hole gravitational waveforms predicted by general relativity. One test subtracts the best-fit waveform from the data and checks the consistency of the residual with detector noise. The second test checks the consistency of the low- and high-frequency parts of the observed signals. The third test checks that phenomenological deviations introduced in the waveform model (including in the post-Newtonian coefficients) are consistent with 0. The fourth test constrains modifications to the propagation of gravitational waves due to a modified dispersion relation, including that from a massive graviton. We present results both for individual events and also results obtained by combining together particularly strong events from the first and second observing runs of Advanced LIGO and Advanced Virgo, as collected in the catalog GWTC-1. We do not find any inconsistency of the data with the predictions of general relativity and improve our previously presented combined constraints by factors of 1.1 to 2.5. In particular, we bound the mass of the graviton to be m_g ≤ 4.7 × 10~(?23) eV=c~2 (90% credible level), an improvement of a factor of 1.6 over our previously presented results. Additionally, we check that the four gravitational-wave events published for the first time in GWTC-1 do not lead to stronger constraints on alternative polarizations than those published previously.
机译:先进的Ligo和高级处女座的引力波检测是一个机会,可以在传统的天文观测和实验室测试无法进入的政权中测试一般相对性。我们在一般相对性预测的二进制黑洞重力波形中提出了四个数据的一致性。一个测试从数据中减去了最佳拟合波形,并检查残留的剩余噪声的一致性。第二种测试检查观察信号的低频和高频部分的一致性。第三种测试检查在波形模型中引入的现象偏差(包括在牛顿后系数中)是一致的,而第四次测试通过改进的分散关系来限制对重力波的传播,包括来自大量的墓碑。我们呈现出各个事件的结果以及通过在目录GWTC-1中收集的先进利润和高级处女座中的第一和第二次观察运行,通过将特别强大的事件结合在一起,如此。我们没有发现数据的任何不一致,通过普通相对论的预测,并通过1.1至2.5的因素改善先前呈现的组合限制。特别是,我们将墓穴的质量束缚为m_g≤4.7×10〜(?23)EV = C〜2(90%可信水平),在我们之前呈现的结果上提高1.6因子。此外,我们检查GWTC-1中首次发布的四个引力波事件不会导致比以前发表的偏振的强制性强制性。

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