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The Spin Alignment of Galaxies with the Large-scale Tidal Field in Hydrodynamic Simulations

机译:水动力模拟中具有大潮场的星系自旋对准

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摘要

The correlation between the spins of dark matter halos and the large-scale structure (LSS) has been studied in great detail over a large redshift range, while investigations of galaxies are still incomplete. Motivated by this point, we use the state-of-the-art hydrodynamic simulation, Illustris-1, to investigate mainly the spin–LSS correlation of galaxies at a redshift of z?=?0. We mainly find that the spins of low-mass, blue, oblate galaxies are preferentially aligned with the slowest collapsing direction () of the large-scale tidal field, while massive, red, prolate galaxy spins tend to be perpendicular to . The transition from a parallel to a perpendicular trend occurs at ~109.4 h ?1 M ⊙ in the stellar mass, ~0.62 in the g–r color, and ~0.4 in triaxiality. The transition stellar mass decreases with increasing redshifts. The alignment was found to be primarily correlated with the galaxy stellar mass. Our results are consistent with previous studies both in N-body simulations and observations. Our study also fills the vacancy in the study of the galaxy spin–LSS correlation at z?=?0 using hydrodynamical simulations and also provides important insight to understand the formation and evolution of galaxy angular momentum.
机译:在较大的红移范围内,已经对暗物质光晕的自旋与大规模结构(LSS)之间的相关性进行了详细研究,而对星系的研究仍不完整。基于这一点,我们使用了最新的流体动力学模拟Illustris-1,主要研究了在z?=?0的红移下星系的自旋-LSS相关性。我们主要发现,低质量,蓝色,扁圆星系的自旋优先与大规模潮汐场的最慢塌陷方向()对齐,而大型,红色,扁长的星系自旋趋于垂直于。从平行趋势到垂直趋势的转变发生在恒星质量的〜109.4 h?1 M ,, g–r颜色的〜0.62,三轴性的〜0.4。过渡恒星质量随着红移的增加而减小。发现对准主要与星系恒星质量有关。我们的结果与以前在N体模拟和观察中的研究一致。我们的研究还使用流体力学模拟填补了在z?=?0时星系自旋-LSS相关性研究的空白,并且为理解星系角动量的形成和演化提供了重要的见识。

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