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Search for the Stochastic Gravitational-wave Background Induced by Primordial Curvature Perturbations in LIGO's Second Observing Run

机译:在Ligo第二观察运行中搜索由原始曲率扰动引起的随机重力波背景

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Primordial density perturbations in the radiation-dominated era of the early universe are expected to generate stochastic gravitational waves (GWs) due to nonlinear mode coupling. In this Letter, we report on a search for such a stochastic GW background in the data of the two LIGO detectors during their second observing run (O2). We focus on the primordial perturbations in the range of comoving wavenumbers 10(16)-10(18) Mpc(-1) for which the stochastic background falls within the detectors' sensitivity band. We do not find any conclusive evidence of this stochastic signal in the data, and thus place the very first GW-based constraints on the amplitude of the power spectrum at these scales. We assume a log-normal shape for the power spectrum and Gaussian statistics for the primordial perturbations, and vary the width of the power spectrum to cover both narrow and broad spectra. Derived upper limits (95%) on the amplitude of the power spectrum are 0.01-0.1. As a byproduct, we are able to infer upper limits on the fraction of the universe's mass in ultralight primordial black holes (M-PBH 10(-20)-10(-19)M) at their formation time to be less than or similar to 10(-25).
机译:在早期宇宙以辐射为主的时代,由于非线性模式耦合,原始密度扰动预计会产生随机引力波(GWs)。在这封信中,我们报告了在两个LIGO探测器的第二次观测运行(O2)期间,在数据中寻找这种随机GW背景的情况。我们主要研究在10(16)-10(18)Mpc(-1)的共移动波数范围内的原始扰动,其中随机背景位于探测器的灵敏度范围内。我们在数据中没有发现任何关于这种随机信号的确凿证据,因此,我们对这些尺度下功率谱的振幅设置了第一个基于GW的约束。我们假设功率谱为对数正态,原始扰动为高斯统计,并改变功率谱的宽度以覆盖窄谱和宽谱。功率谱振幅的推导上限(95%)为0.01-0.1。作为副产品,我们能够推断出超轻原始黑洞(M-PBH10(-20)-10(-19)M)在形成时宇宙质量分数的上限小于或类似于10(-25)。

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