论文标题

LSST DESC数据挑战1:下一代调查的合成图像的生成和分析

The LSST DESC Data Challenge 1: Generation and Analysis of Synthetic Images for Next Generation Surveys

论文作者

Sánchez, F. Javier, Walter, Chris W., Awan, Humna, Chiang, James, Daniel, Scott F., Gawiser, Eric, Glanzman, Tom, Kirkby, David P., Mandelbaum, Rachel, Slosar, Anže, Wood-Vasey, W. Michael, AlSayyad, Yusra, Burke, Colin J., Digel, Seth W., Jarvis, Mike, Johnson, Tony, Kelly, Heather, Krughoff, Simon, Lupton, Robert H., Marshall, Phil J., Peterson, John R., Price, Paul A., Sembroski, Glenn, Van Klaveren, Brian, Wiesner, Matthew P., Xin, Bo

论文摘要

数据挑战1(DC1)是鲁宾天文台遗产时空(LSST)黑暗能源科学合作(DESC)生产的第一个合成数据集。 DC1旨在开发和验证数据减少和分析,并研究会影响LSST数据集的系统效应的影响。 DC1由$ r $ band观测值组成40度$^{2} $至10年LSST深度。我们介绍了模拟和分析过程的每个阶段:a)生成,通过在具有不同观察条件的单个传感器访问图像中合成宇宙n体仿真的源; b)使用LSST科学管道的开发版本减少; c)与输入宇宙学目录匹配以进行验证和测试。我们验证可测试的LSST要求通过DC1的保真度。我们建立了一种选择程序,该过程产生了足够清洁的用于聚类分析的足够清洁的样品,并讨论了剩余的样品污染,包括恒星分离效率低下的贡献和不完善的融合。我们计算模拟场上的星系功率谱,并得出结论:i)调查属性对DC1中使用的量表和模型的统计不确定性的50 \%ii)ii)选择以消除目录中的伪像的选择是为了避免测得的聚类中的偏见; iii)明亮物体的存在在估计的功率谱($ \ ell> 1200 $)的估计功率谱中具有显着影响(2-6- $σ$),从而突出了LSST小角度尺度研究中混合的影响;

Data Challenge 1 (DC1) is the first synthetic dataset produced by the Rubin Observatory Legacy Survey of Space and Time (LSST) Dark Energy Science Collaboration (DESC). DC1 is designed to develop and validate data reduction and analysis and to study the impact of systematic effects that will affect the LSST dataset. DC1 is comprised of $r$-band observations of 40 deg$^{2}$ to 10-year LSST depth. We present each stage of the simulation and analysis process: a) generation, by synthesizing sources from cosmological N-body simulations in individual sensor-visit images with different observing conditions; b) reduction using a development version of the LSST Science Pipelines; and c) matching to the input cosmological catalog for validation and testing. We verify that testable LSST requirements pass within the fidelity of DC1. We establish a selection procedure that produces a sufficiently clean extragalactic sample for clustering analyses and we discuss residual sample contamination, including contributions from inefficiency in star-galaxy separation and imperfect deblending. We compute the galaxy power spectrum on the simulated field and conclude that: i) survey properties have an impact of 50\% of the statistical uncertainty for the scales and models used in DC1 ii) a selection to eliminate artifacts in the catalogs is necessary to avoid biases in the measured clustering; iii) the presence of bright objects has a significant impact (2- to 6-$σ$) in the estimated power spectra at small scales ($\ell > 1200$), highlighting the impact of blending in studies at small angular scales in LSST;

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