论文标题

与本地组和本地体积星形成历史一起搜索整个宇宙时间的合规性

Searching for Conformity Across Cosmic Time with Local Group and Local Volume Star Formation Histories

论文作者

Olsen, Charlotte, Gawiser, Eric

论文摘要

一致性表示星系对之间的性质的相关性与分离的函数。诸如恒星形成率(SFR),恒星质量和特定恒星形成率(SSFR)之类的属性之间的相关性对环境对星系形成和进化的影响有影响。在模拟和观察中已经有充分的文献记录了同一暗物质光环中的主要星系和卫星之间的一致性。然而,在更大距离上的合格存在(称为两半符合性)仍然不确定。我们研究了局部体积中的星系至4 MPC的距离是否通过检查SFR,SSFR,恒星质量和淬火分数显示出物理分离的函数。利用这些星系的恒星形成历史,我们及时扩展了此分析,以提供过去的光锥体内的第一个符合性探测。在目前,我们发现星系的恒星质量或SSFR与相邻星系的中位SFR相关,分别为2至3 MPC。在1 GYR的回顾期间,我们发现与相邻星系的淬灭分数有一个相关性,在2至3 MPC分离时再次相关。这些顺从性信号很可能是由于最近的当地组矮星系与当地群体以外的恒星形成历史之间的差异引起的。随着包括JWST,Rubin和Roman在内的当前和将来的任务扩展了本地体积星系的样本,使用星形形成历史进行合格测试将为探索星系之间的时空相关性提供重要的工具。

Conformity denotes the correlation of properties between pairs of galaxies as a function of separation. Correlations between properties such as star formation rate (SFR), stellar mass, and specific star formation rate (sSFR) have implications for the impact of environment upon galaxy formation and evolution. Conformity between primary galaxies and satellites within the same dark matter halo has been well documented in simulations and observations. However, the existence of conformity at greater distances - known as two-halo conformity - remains uncertain. We investigate whether galaxies in the Local Volume to a distance of 4 Mpc show conformity by examining SFR, sSFR, stellar mass, and quenched fraction as a function of physical separation. Making use of the star formation histories of these galaxies, we then extend this analysis back in time to offer the first probe of conformity inside our past light cone. At the present day, we find that the stellar mass or sSFR of a galaxy correlates with the median SFR of neighboring galaxies at a separation of 2 to 3 Mpc. At a lookback time of 1 Gyr, we find a correlation with the quenched fraction of neighboring galaxies, again at 2 to 3 Mpc separation. These signals of conformity likely arise from the differences between the recent star formation histories of Local Group dwarf galaxies and those outside the Local Group. As current and future missions including JWST, Rubin, and Roman expand the sample of Local Volume galaxies, tests of conformity using star formation histories will provide an important tool for exploring spatio-temporal correlations between galaxies.

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