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Exploring the potentiality of standard sirens to probe cosmic opacity at high redshifts

机译:探索标准警报器的潜力在高射频下探测宇宙不透明度

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In this work, using the Gaussian process, we explore the potentiality of future gravitational wave (GW) measurements to probe cosmic opacity at high redshifts through comparing its opacity-free luminosity distance (LD) with the opacity-dependent one from the combination of Type Ia supernovae (SNIa) and gamma-ray bursts (GRBs). The GW data, SNIa and GRB data are simulated from the measurements of the future Einstein Telescope, the actual Pantheon compilation and the latest observation of GRBs compiled by Amati et al, respectively. A nonparametric method is proposed to probe the spatial homogeneity of cosmic transparency at high redshift by comparing the LD reconstructed from the GW data with that reconstructed from the Pantheon and GRB data. In addition, the cosmic opacity is tested by using the parametrization for the optical depth, and the results show that the constraints on cosmic opacity are more stringent than the previous ones. It shows that the future GW measurements may be used as an important tool to probe the cosmic opacity in the high redshift region.
机译:在这项工作中,使用高斯过程,我们探讨了未来的引力波(GW)测量的潜力,以通过与透明度依赖于类型的透明度依赖于透明度的透明度距离(LD)探测在高射频中的宇宙不透明度Ia超新世界(SNIA)和γ射线爆发(GRBS)。 GW数据,SNIA和GRB数据被模拟了未来爱因斯坦望远镜的测量,实际的万神殿汇编以及Amati等人编制的Grbs的最新观察。提出了一种非参数方法,以探测通过与从万神经和GRB数据重建的GW数据重建的LD进行比较来探测高射频处的宇宙透明度的空间均匀性。另外,通过使用光学深度的参数化来测试宇宙不透明度,结果表明,宇宙不透明度的约束比前一个更严格。它表明,未来的GW测量可以用作探测高红移区域中的宇宙不透明度的重要工具。

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