AMICO-WL:弱透镜星系团探测的最优滤波算法

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
L. Trobbiani, M. Maturi, C. Giocoli, L. Moscardini, G. Panebianco
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引用次数: 0

摘要

上下文。星系团是宇宙中质量最大的束缚结构,它的探测对宇宙学分析至关重要。弱透镜信号使我们能够追踪所有物质(暗物质和重子物质)的分布,而不管其可观察到的电磁特性如何。即将到来的欧几里得和lsst -鲁宾等广域巡天将提供数十亿个背景星系的增强形状测量,为在巨大的宇宙尺度上探测星系团提供无与伦比的机会。这些调查产生的大量数据将需要有效和准确的分析技术。在这项工作中,我们介绍了AMICO- wl,这是AMICO中实现的最优滤波算法的扩展,AMICO是一个经过良好测试的用于光簇检测的代码。AMICO- wl为AMICO基础设施中的弱透镜数据实现了特定的线性优化匹配滤波器,使用并行化和添加有效的信噪比阈值方法来设置所需的样品纯度和清洁程序来处理混合检测。该算法在25°2的类欧几里得模拟星系目录上进行了测试,并使用dustgrain -探路者过去光锥产生了模拟剪切信号。我们基于输入星表中低红移星系的不同切割实现了前景去除程序。为了评估该方法的性能,我们使用了一种基于模拟的单个红移透镜平面的“闪烁”的有效匹配程序。在模拟中,AMICO-WL检测与M200>5×1013 M⊙/h的暗物质晕样品进行交叉匹配,考虑到纯度水平为~ 70%,应用前景去除将完整性从6.5%提高到13%,同时显著降低了假检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AMICO-WL: an optimal filtering algorithm for galaxy cluster detections with weak lensing
Context. The detection of galaxy clusters, the most massive bound structures in the universe, is crucial for cosmological analysis. Weak lensing signals allow us to track the distribution of all (dark and baryonic) matter regardless of its observable electromagnetic properties. Upcoming wide-field surveys like Euclid and LSST-Rubin will provide enhanced shape measurements of billions of background galaxies, presenting an unparalleled opportunity to detect galaxy clusters on a vast cosmic scale.Aims. The immense data volume generated by these surveys will require efficient and accurate analysis techniques. In this work, we introduce AMICO-WL, an extension of the optimal filtering algorithm implemented in AMICO, a well-tested code developed for optical cluster detection. AMICO-WL implements a specific linear optimal matched filter for weak lensing data in the AMICO infrastructure, using parallelisation and adding an efficient signal-to-noise ratio thresholding approach to set a desired sample purity and a cleaning procedure to deal with blended detections.Methods. The algorithm has been tested on a 25 deg2 field of Euclid-like mock galaxy catalogue with the simulated shear signal produced using DUSTGRAIN-pathfinder past-light-cones. We implemented a foreground removal procedure based on different cuts of low redshift galaxies from the input catalogue. To evaluate the performance of the method, we used an efficient matching procedure based on the ‘blinking’ of the simulation's individual redshift lensing planes.Results. Cross-matching the AMICO-WL detections with the dark matter halo sample in the simulation having M200>5×1013M/h and considering a purity level of ∼70%, the application of the foreground removal doubles the completeness from 6.5% to 13% and at the same time produces a significant decrease of spurious detections.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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