论文标题
具有分析协方差矩阵的老板的宇宙学约束
Cosmological constraints from BOSS with analytic covariance matrices
论文作者
论文摘要
我们使用分析协方差矩阵来对BARYON振荡光谱调查(BOSS)的星系功率谱多物进行全面分析。我们获得的参数估计值与基于两千个星系模拟目录的样品协方差的参数非常吻合,从而验证了分析方法并提供了大幅度降低计算成本。我们还强调了分析协方差的许多其他优势。首先,分析不会遭受采样噪声的影响,这会偏向约束,通常需要夸大参数误差线。其次,它使我们能够在重新计算分析协方差以匹配最佳拟合功率谱时研究宇宙学约束的收敛性,这可以以可忽略的计算成本进行,这与使用模拟目录时不同。这些效果减少了宇宙学约束的系统错误预算,这表明分析方法可能是即将进行高精度Galaxy Redshift调查(例如DESI和Euclid)的重要工具。最后,我们研究了各种成分在功率光谱协方差矩阵中的影响,并表明包括常规的三角谱和超级样本协方差的非高斯部分具有边际效应($ \ lyssim 10 \%$ $)对宇宙学参数误差条。我们还建议改进用于Fisher预测中的分析协方差。
We use analytic covariance matrices to carry out a full-shape analysis of the galaxy power spectrum multipoles from the Baryon Oscillation Spectroscopic Survey (BOSS). We obtain parameter estimates that agree well with those based on the sample covariance from two thousand galaxy mock catalogs, thus validating the analytic approach and providing substantial reduction in computational cost. We also highlight a number of additional advantages of analytic covariances. First, the analysis does not suffer from sampling noise, which biases the constraints and typically requires inflating parameter error bars. Second, it allows us to study convergence of the cosmological constraints when recomputing the analytic covariances to match the best-fit power spectrum, which can be done at a negligible computational cost, unlike when using mock catalogs. These effects reduce the systematic error budget of cosmological constraints, which suggests that the analytic approach may be an important tool for upcoming high-precision galaxy redshift surveys such as DESI and Euclid. Finally, we study the impact of various ingredients in the power spectrum covariance matrix and show that the non-Gaussian part, which includes the regular trispectrum and super-sample covariance, has a marginal effect ($\lesssim 10 \%$) on the cosmological parameter error bars. We also suggest improvements to analytic covariances that are commonly used in Fisher forecasts.