论文标题
内在对齐超级样本协方差的宇宙学后果
Cosmological consequences of intrinsic alignments super-sample covariance
论文作者
论文摘要
我们检查了由于有限的调查量,高精度弱透镜调查(包括超级样本协方差(SSC))的宇宙学约束。具体而言,我们专注于{\ IT在固有比对中击败耦合}的贡献,这是在平坦的天空近似下完整宇宙剪切信号的一部分。 SSC效应通过降低红移箱的生长,并指示累积信号与噪声比(SNR)的中间体和高多物的占地面积。由于包括固有的对齐超级样本协方差,因此SNR减少了约10 \%$,以获得完整的宇宙剪切信号,具体取决于固有比对的幅度,椭圆形分散幅度,椭圆形分散和调查的红移范围,而光度红色误差的贡献则可以忽略噪音。使用Fisher-Matrix形式主义,我们发现超出调查体积的大模式在小模式上的影响会改变内在的比对。然而,与重力弱透镜相比,对宇宙参数估计的相应影响是微不足道的,特别是当考虑所有可用的红移箱时。我们的结果还表明,在完整宇宙剪切的分析协方差矩阵中,包括$σ_8$的置信区间的分析协方差矩阵,包括$σ_8$ $ \%$的样本,具有几乎高内在比对的样本的置信区间的略有差异。
We examine cosmological constraints from high precision weak lensing surveys including super-sample covariance (SSC) due to the finite survey volume. Specifically, we focus on the contribution of {\it beat coupling} in the intrinsic alignments as a part of full cosmic shear signal under flat sky approximation. The SSC-effect grows by going to lower redshift bin and indicates considerable footprint on the intermediate and high multipoles for cumulative signal to noise ratio (SNR). The SNR is reduced by $\approx 10\%$ as a consequence of including the intrinsic alignments super-sample covariance, for the full cosmic shear signal, depending on the amplitude of intrinsic alignments, the ellipticity dispersion and the survey redshift ranges, while the contribution of photometric redshift error can be ignored in the cumulative signal to noise ratio. Using the Fisher-matrix formalism, we find that the impact of large modes beyond the volume of the surveys on the small modes alters the intrinsic alignments. However, corresponding impact on the cosmological parameters estimation is marginal compared to that of for gravitational weak lensing, particularly, when all available redshift bins are considered. Our results also demonstrate that, including SSC-effect on the intrinsic alignments in the analytical covariance matrix of full cosmic shear leads to increase marginally the confidence interval for $σ_8$ by $\approx 10\%$ for a sample with almost high intrinsic alignments amplitude.