论文标题
使用角度两点相关性来自我校准贴花的光度红移分布DR9
Using angular two-point correlations to self-calibrate the photometric redshift distributions of DECaLS DR9
论文作者
论文摘要
校准光度星系样品的红移分布在弱透镜研究中至关重要。自校准方法结合了多个光度红移(photo-$ z $)箱中星系之间的角度自动和互相关,以重建红移箱之间的散射速率矩阵。在本文中,我们使用贴花数据发行9测试了最近提出的自我校准算法,并研究了确定散射速率的程度。我们首先通过基于机器学习的方法进行成像系统而导致的杂质角相关性。然后,我们改进了$χ^2 $最小化和误差估计的算法。最后,我们解决了散射矩阵,进行一系列的一致性测试并找到合理的协议:(1)更好的照片 - $ z $ bins返回一个高分辨率散射矩阵,并且与宽箱的低分辨率矩阵完全一致; (2)北银河盖的散射基质几乎与南部银河帽的散射基质几乎相同; (3)散射矩阵与由功率谱和加权光谱子样本构建的矩阵合理地一致。我们还评估了宇宙放大倍数的影响。尽管它几乎改变了散射矩阵的对角线元素,但它会显着影响非对角线。散射矩阵还显示出对输入相关性的尺度切割的一些依赖性,这可能与某些散射对之间的已知数值变性有关。这项工作证明了自校准方法在实际数据中的可行性,并提供了校准光度样品的红移分布的实用替代方法。
Calibrating the redshift distributions of photometric galaxy samples is essential in weak lensing studies. The self-calibration method combines angular auto- and cross-correlations between galaxies in multiple photometric redshift (photo-$z$) bins to reconstruct the scattering rates matrix between redshift bins. In this paper, we test a recently proposed self-calibration algorithm using the DECaLS Data Release 9 and investigate to what extent the scattering rates are determined. We first mitigate the spurious angular correlations due to imaging systematics by a machine learning based method. We then improve the algorithm for $χ^2$ minimization and error estimation. Finally, we solve for the scattering matrices, carry out a series of consistency tests and find reasonable agreements: (1) finer photo-$z$ bins return a high-resolution scattering matrix, and it is broadly consistent with the low-resolution matrix from wider bins; (2) the scattering matrix from the Northern Galactic Cap is almost identical to that from Southern Galactic Cap; (3) the scattering matrices are in reasonable agreement with those constructed from the power spectrum and the weighted spectroscopic subsample. We also evaluate the impact of cosmic magnification. Although it changes little the diagonal elements of the scattering matrix, it affects the off-diagonals significantly. The scattering matrix also shows some dependence on scale cut of input correlations, which may be related to a known numerical degeneracy between certain scattering pairs. This work demonstrates the feasibility of the self-calibration method in real data and provides a practical alternative to calibrate the redshift distributions of photometric samples.