论文标题

星系中的星气错位:ii。从地平线模拟中发现的起源

Star-Gas Misalignment in Galaxies: II. Origins Found from the Horizon-AGN Simulation

论文作者

Khim, Donghyeon J., Yi, Sukyoung K., Pichon, Christophe, Dubois, Yohan, Devriendt, Julien, Choi, Hoseung, Bryant, Julia J., Croom, Scott M.

论文摘要

有许多研究旨在揭示星系中出现的星气未对准的起源,但仍然缺乏对每个构造渠道候选者的贡献的了解。我们的目的是通过研究地平线 - 宇宙学大批量模拟星系形成中的未对准星系来回答这个问题。我们的样本中有27,903个星系恒星质量$ M_*> 10^{10} m_ \ odot $,其中5,984个位于$ M_ {200}> 10^{12} {12} {12} m_ \ odot $的光环质量中。我们已经确定了未对准的四个主要构造通道,并量化了它们的贡献水平:合并(35%),与附近星系的相互作用(23%),与密集环境或中央星系的相互作用(21%)以及世俗的进化,包括来自邻近细丝(21%)的平滑积聚。我们在模拟中发现,气体而不是恒星通常更容易受到动态干扰的影响。因此,未对准的形成主要是由于气体的旋转轴而不是恒星的变化,而不论原点如何。我们还检查了未对准的寿命(持续时间)。未对准的衰减时间尺度表明,运动学形态($ v/σ$)和银河系的冷气分位具有强烈的抗相关性。在密集的地区,未对准的寿命更长,这与对宿主银河系的环境影响有关。未对准寿命的长度有很大的差异,具体取决于原点,可以通过初始位置角度偏移的大小和星系的物理特性来解释。

There have been many studies aiming to reveal the origins of the star-gas misalignment found in galaxies, but there still is a lack of understanding of the contribution from each formation channel candidate. We aim to answer the question by investigating the misaligned galaxies in Horizon-AGN, a cosmological large-volume simulation of galaxy formation. There are 27,903 galaxies of stellar mass $M_* > 10^{10} M_\odot$ in our sample, of which 5,984 are in a group of the halo mass of $M_{200} > 10^{12} M_\odot$. We have identified four main formation channels of misalignment and quantified their level of contribution: mergers (35%), interaction with nearby galaxies (23%), interaction with dense environments or their central galaxies (21%), and secular evolution including smooth accretion from neighboring filaments (21%). We found in the simulation that the gas, rather than stars, is typically more vulnerable to dynamical disturbances; hence, misalignment formation is mainly due to the change in the rotational axis of the gas rather than stars, regardless of the origin. We have also inspected the lifetime (duration) of the misalignment. The decay timescale of the misalignment shows a strong anti-correlation with the kinematic morphology ($V/σ$) and the cold gas fraction of the galaxy. The misalignment has a longer lifetime in denser regions, which is linked with the environmental impact on the host galaxy. There is a substantial difference in the length of the misalignment lifetime depending on the origin, and it can be explained by the magnitude of the initial position angle offset and the physical properties of the galaxies.

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