Galaxy Triplets Alignment in Large-scale Filaments

Q1 Earth and Planetary Sciences
Yu Rong, Jinzhi Shen, Zi-chen Hua
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引用次数: 0

Abstract

Leveraging the datasets of galaxy triplets and large-scale filaments obtained from the Sloan Digital Sky Survey, we scrutinize the alignment of the three sides of the triangles formed by galaxy triplets and the normal vectors of the triplet planes within observed large-scale filaments. Our statistical investigation reveals that the longest and median sides of the galaxy triplets exhibit a robust alignment with the spines of their host large-scale filaments, while the shortest sides show no or only weak alignment with the filaments. Additionally, the normal vectors of triplets tend to be perpendicular to the filaments. The alignment signal diminishes rapidly with the increasing distance from the triplet to the filament spine, and is primarily significant for triplets located within distances shorter than 0.2 Mpc/h, with a confidence level exceeding 20σ. Moreover, in comparison to compact galaxy triplets, the alignment signal is more conspicuous among the loose triplets. This alignment analysis contributes to the formulation of a framework depicting the clustering and relaxation of galaxies within cosmological large-scale filament regimes, providing deeper insights into the intricate interactions between galaxies and their pivotal role in shaping galaxy groups.
大尺度丝状结构中的星系三胞胎排列
利用从斯隆数字巡天获得的星系三连体和大尺度细丝数据集,我们仔细研究了星系三连体形成的三角形的三边与观测到的大尺度细丝中的三连体平面的法向量的对齐情况。我们的统计调查显示,星系三胞胎的最长边和中位边与它们的宿主大尺度丝状体的刺状面有很强的配位关系,而最短边与丝状体没有配位关系或者只有微弱的配位关系。此外,三体星系的法向量往往与细丝垂直。对齐信号随着三体到丝脊距离的增加而迅速减弱,主要对距离小于0.2 Mpc/h的三体有显著影响,置信度超过20σ。此外,与紧凑星系三胞胎相比,排列信号在松散三胞胎中更为明显。这种排列分析有助于建立一个描述星系在宇宙学大尺度丝状结构中的聚集和松弛的框架,从而更深入地揭示星系之间错综复杂的相互作用及其在塑造星系群中的关键作用。
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来源期刊
Monthly Notices of the Royal Astronomical Society: Letters
Monthly Notices of the Royal Astronomical Society: Letters Earth and Planetary Sciences-Space and Planetary Science
CiteScore
8.80
自引率
0.00%
发文量
136
期刊介绍: For papers that merit urgent publication, MNRAS Letters, the online section of Monthly Notices of the Royal Astronomical Society, publishes short, topical and significant research in all fields of astronomy. Letters should be self-contained and describe the results of an original study whose rapid publication might be expected to have a significant influence on the subsequent development of research in the associated subject area. The 5-page limit must be respected. Authors are required to state their reasons for seeking publication in the form of a Letter when submitting their manuscript.
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