论文标题

Illustris-TNG和MassiveBlack-II模拟中的组尺度固有星系对齐

Group-scale intrinsic galaxy alignments in the Illustris-TNG and MassiveBlack-II simulations

论文作者

Tenneti, Ananth, Kitching, Thomas D., Joachimi, Benjamin, Di Matteo, Tiziana

论文摘要

我们研究了卫星星系及其各向异性分布的比对,以大规模的II和Illustristng模拟的位置和宿主中央星系的位置和方向。 We find that: the shape of the satellite system in halos of mass ($> 10^{13}h^{-1}M_{\odot}$) is well aligned with the shape of the central galaxy at $z=0.06$ with the mean alignment between the major axes being $\sim Δθ= 12^{\circ}$ when compared to a uniform random distribution;该卫星星系倾向于沿着中央星系的主要轴分布,并且在较高的质量或发光度的光环中比对齐。并且卫星分布对于具有较低恒星形成速率的中央星系,是球形的,对于红色中央星系。我们发现,卫星各向异性对中央星系特性的依赖性,并且在两个模拟中,径向距离都相似。卫星星系的方向倾向于指向中央星系在小尺度上的位置,并且随着距离的增加,这种相关性降低,并且在高质量光环中,卫星比对的幅度较高。但是,预计椭圆率并未表现出比例依赖性的径向比对,正如某些观察性测量中所见。

We study the alignments of satellite galaxies, and their anisotropic distribution, with respect to location and orientation of their host central galaxy in MassiveBlack-II and IllustrisTNG simulations. We find that: the shape of the satellite system in halos of mass ($> 10^{13}h^{-1}M_{\odot}$) is well aligned with the shape of the central galaxy at $z=0.06$ with the mean alignment between the major axes being $\sim Δθ= 12^{\circ}$ when compared to a uniform random distribution; that satellite galaxies tend to be anisotropically distributed along the major axis of the central galaxy with a stronger alignment in halos of higher mass or luminosity; and that the satellite distribution is more anisotropic for central galaxies with lower star formation rate, which are spheroidal, and for red central galaxies.Radially we find that satellites tend to be distributed along the major axis of the shape of the stellar component of central galaxies at smaller scales and the dark matter component on larger scales. We find that the dependence of satellite anisotropy on central galaxy properties and the radial distance is similar in both the simulations with a larger amplitude in MassiveBlack-II. The orientation of satellite galaxies tends to point toward the location of the central galaxy at small scales and this correlation decreases with increasing distance, and the amplitude of satellite alignment is higher in high mass halos. However, the projected ellipticities do not exhibit a scale-dependent radial alignment, as has been seen in some observational measurements.

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