Assessing the reliability of the Bisous filament finder

IF 27.8 1区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS The Astronomy and Astrophysics Review Pub Date : 2021-03-11 DOI:10.1051/0004-6361/202039169
M. Muru, E. Tempel
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引用次数: 1

Abstract

Aims. This work provides an analysis of how the galaxy number density of the input data affects the filaments detected with the Bisous filament finder and gives estimates of the reliability of the method itself to assess the robustness of the results. Methods. We applied the Bisous filament finder to MultiDark-Galaxies data, using various magnitude cuts from the catalogue to study the effects of different galaxy number densities on the results and different parameters of the model. We compared the structures by the fraction of galaxies in filaments and the volume filled by filaments, and we analysed the similarities between the results from different cuts based on the overlap between detected filamentary structures. The filament finder was also applied to the exact same data 200 times with the same parameters to study the stochasticity of the results and the correlation between different runs was calculated. Results. Multiple samples show that galaxies in filaments have preferentially higher luminosity. We found that when a galaxy is in a filament there is a 97% chance that the same galaxy would be in a filament with even more complete input data and about 85% of filaments are persistent when detecting the filamentary network with higher-density input data. Lower galaxy number density inputs mean the Bisous model finds fewer filaments, but the filaments found are persistent even if we use more complete input data for the detection. We calculated the correlation coefficient between 200 Bisous runs on the exact same input, which is 0.98. Conclusions. This study confirms that increased number density of galaxies is important to obtain a more complete picture of the cosmic web. To overcome the limitation of the spectroscopic surveys, we will develop the Bisous model further to apply this tool to combined spectroscopic and narrow-band photometric redshift surveys, such as the J-PAS.
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评估Bisous灯丝探测器的可靠性
目标这项工作分析了输入数据的星系数密度如何影响Bisous灯丝探测器探测到的灯丝,并对方法本身的可靠性进行了估计,以评估结果的稳健性。方法。我们将Bisous filament finder应用于MultiDark-Galaxies数据,使用星表中不同的星等切割来研究不同星系数密度对模型结果和不同参数的影响。我们通过细丝中星系的比例和细丝填充的体积来比较结构,并根据检测到的细丝结构之间的重叠来分析不同切割结果之间的相似性。在相同的参数下,对相同的数据进行了200次实验,研究了实验结果的随机性,并计算了不同次实验结果之间的相关性。结果。多个样本表明,长丝星系优先具有较高的光度。我们发现,当一个星系处于一个细丝中时,同样的星系有97%的机会处于一个输入数据更完整的细丝中,当检测到具有高密度输入数据的细丝网络时,大约85%的细丝是持久的。较低的星系数密度输入意味着Bisous模型发现的细丝更少,但即使我们使用更完整的检测输入数据,发现的细丝也是持久的。我们计算出在完全相同的输入下200次Bisous运行之间的相关系数为0.98。结论。这项研究证实,增加星系的数量密度对于获得更完整的宇宙网的图像是很重要的。为了克服光谱调查的局限性,我们将进一步发展Bisous模型,将该工具应用于光谱和窄带光度红移联合调查,如J-PAS。
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来源期刊
The Astronomy and Astrophysics Review
The Astronomy and Astrophysics Review 地学天文-天文与天体物理
CiteScore
45.00
自引率
0.80%
发文量
7
期刊介绍: The Astronomy and Astrophysics Review is a journal that covers all areas of astronomy and astrophysics. It includes subjects related to other fields such as laboratory or particle physics, cosmic ray physics, studies in the solar system, astrobiology, instrumentation, and computational and statistical methods with specific astronomical applications. The frequency of review articles depends on the level of activity in different areas. The journal focuses on publishing review articles that are scientifically rigorous and easily comprehensible. These articles serve as a valuable resource for scientists, students, researchers, and lecturers who want to explore new or unfamiliar fields. The journal is abstracted and indexed in various databases including the Astrophysics Data System (ADS), BFI List, CNKI, CNPIEC, Current Contents/Physical, Chemical and Earth Sciences, Dimensions, EBSCO Academic Search, EI Compendex, Japanese Science and Technology, and more.
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