论文标题

星系尺寸 - 中央和卫星星系的光环质量缩放关系和聚类特性

The galaxy size - halo mass scaling relations and clustering properties of central and satellite galaxies

论文作者

Rodriguez, Facundo, Montero-Dorta, Antonio D., Angulo, Raul E., Artale, M. Celeste, Merchán, Manuel

论文摘要

在这项工作中,我们将Sloan Digital Sky Server(SDSS)的尺寸和出色的质量测量与Rodriguez \&Merchán的小组查找器算法结合在一起,以确定中央和卫星星系的巨大质量关系。我们表明,尽管中央和卫星星系显示出相似的恒星质量 - 大小关系,其光环质量 - 大小关系差异很大。正如预期的那样,更大的光环倾向于容纳更大的中央星系。但是,卫星星系的大小仅略微取决于光晕病毒质量。我们表明,这些结果与非常简单的模型兼容,其中中央和卫星星系的大小是其宿主光环质量的立方根,卫星的标准化为$ \ sim $ \ sim $ 30 \%,比中央星系小于中央星系,这可以归因于潮汐剥离。我们进一步检查我们的测量值与Illustristng流体动力学模拟的预测非常吻合。在本文的第二部分中,我们分析了中央和卫星星系的聚类特性如何取决于它们的大小。我们证明,与所采用的恒星质量阈值无关,当考虑整个样品或仅考虑卫星时,较小的星系比较大的星系更紧密。当仅针对中央星系执行尺寸分裂时,在大尺度上观察到相反的趋势。我们的结果对将星系尺寸与宿主光环的特性联系起来的光环 - 加拉克斯连接模型给予了重大限制。

In this work, we combine size and stellar mass measurements from the Sloan Digital Sky Server (SDSS) with the group finder algorithm of Rodriguez \& Merchán in order to determine the stellar and halo mass -- size relations of central and satellite galaxies separately. We show that, while central and satellite galaxies display similar stellar mass -- size relations, their halo mass -- size relations differ significantly. As expected, more massive haloes tend to host larger central galaxies. However, the size of satellite galaxies depends only slightly on halo virial mass. We show that these results are compatible with a remarkably simple model in which the size of central and satellite galaxies scales as the cubic root of their host halo mass, with the normalization for satellites being $\sim$ 30 \% smaller than that for central galaxies, which can be attributed to tidal stripping. We further check that our measurements are in excellent agreement with predictions from the IllustrisTNG hydrodynamical simulation. In the second part of this paper, we analyse how the clustering properties of central and satellite galaxies depend on their size. We demonstrate that, independently of the stellar mass threshold adopted, smaller galaxies are more tightly clustered than larger galaxies when either the entire sample or only satellites are considered. The opposite trend is observed on large scales when the size split is performed for the central galaxies alone. Our results place significant constraints for halo-galaxy connection models that link galaxy size with the properties of their hosting haloes.

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