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Assessment of the cosmic distance duality relation using Gaussian process

机译:使用高斯过程评估宇宙距离二元关系

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Two types of distance measurement are important in cosmological observations, the angular diameter distance d(A) and the luminosity distance d(L). In this work, we carried out an assessment of the theoretical relation between these two distance measurements, namely the cosmic distance-duality relation, from type Ia supernova (SN-Ia) data, the cosmic chronometer (CC) Hubble parameter data, and baryon acoustic oscillation (BAO) data using Gaussian Process (GP). The luminosity distance curve and the angular diameter distance curve are extracted from the SN-Ia data and the combination of BAO and CC data, respectively, using the GP. The distance duality relation is checked by a non-parametric reconstruction using the reconstructed H, d(L), and the volume-averaged distance D-v. We compare the results obtained for different choices of the covariance function employed in the GP. It is observed that the theoretical distance duality relation is in well agreement with the present analysis in 2 sigma for the overlapping redshift domain 0 <= z <= 2 of the reconstruction.
机译:两种类型的距离测量在宇宙学观察中是重要的,角直径距离D(A)和亮度距离D(L)。在这项工作中,我们对这两个距离测量值之间的理论关系,即宇宙距离 - 二元关系,来自IA型超新星(SN-IA)数据,宇宙的计时器(CC)Hubble参数数据和Baryon之间的理论关系进行了评估使用高斯过程(GP)的声学振荡(BAO)数据。使用GP,分别从SN-IA数据和BAO和CC数据的组合中提取亮度距离曲线和角直径距离曲线。使用重建的H,D(L)和体积平均距离D-V来检查距离二元性关系。我们比较GP中使用的协方差函数的不同选择所获得的结果。观察到,理论距离二元关系与对重叠射频域0 <= Z <= 2的2 sigma中的本分析相一致。

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