论文标题
Illustristng及其现实世界中的热和反旋转星形磁盘星系
Hot and counter-rotating star-forming disk galaxies in IllustrisTNG and their real-world counterparts
论文作者
论文摘要
大量低质量,晚期磁盘星系的主要特征是具有指数光分布的星形磁盘。它们通常还与薄且平坦的形态,蓝色和动态冷的星星沿着共同平面稀薄的气盘移动。但是,后者的功能并不一定总是暗示前者,实际上,确实存在各种不同的运动型配置。在这项工作中,我们使用宇宙学水动力学插图模拟来研究下恒星质量范围内动态热,有时甚至是反向旋转的,恒星形成的磁盘星系的性质和起源($ 5 \ times 10^9 \,\ Mathrm,\ Mathrm {M _ {M _ {\ odot}} $和$ 2 \ $ 2 \ $ 2 \ $ 2 \ tiest tiest 10^{10} \,\ mathrm {m _ {\ odot}} $)。我们发现,在大多数情况下,动态发热是作为诱导的瞬态状态而产生的,例如由于星系相互作用和合并活动,而不是作为星形磁盘星系的年龄依赖性进化阶段。动态炎热但仍在积极的恒星磁盘显示了托管运动学错位的气体和恒星磁盘以及集中浓缩恒星形成的共同特征。前者通常伴随着气体形态的干扰,而后者则反映在低气和恒星旋转中,与动态冷的,正常的盘相比。有趣的是,从漫画中观察到的星系,气体和恒星之间的运动不对准与Illustristng星系非常相似,因此是合理的现实世界对应物。反过来,这使我们能够预测这些未对准星系的恒星轨道和气体性能。
A key feature of a large population of low-mass, late-type disk galaxies are star-forming disks with exponential light distributions. They are typically also associated with thin and flat morphologies, blue colors, and dynamically cold stars moving along circular orbits within co-planar thin gas disks. However, the latter features do not necessarily always imply the former, in fact, a variety of different kinematic configurations do exist. In this work, we use the cosmological hydrodynamical IllustrisTNG Simulation to study the nature and origin of dynamically hot, sometimes even counter-rotating, star-forming disk galaxies in the lower stellar mass range (between $5\times 10^9\,\mathrm{M_{\odot}}$ and $2\times 10^{10}\,\mathrm{M_{\odot}}$). We find that being dynamically hot arises in most cases as an induced transient state, for example due to galaxy interactions and merger activities, rather than as an age-dependent evolutionary phase of star-forming disk galaxies. The dynamically hot but still actively star-forming disks show a common feature of hosting kinematically misaligned gas and stellar disks, and centrally concentrated on-going star formation. The former is often accompanied by disturbed gas morphologies, while the latter is reflected in low gas and stellar spins in comparison to their dynamically cold, normal disk counterparts. Interestingly, observed galaxies from MaNGA with kinematic misalignment between gas and stars show remarkably similar general properties as the IllustrisTNG galaxies, and therefore are plausible real-world counterparts. In turn, this allows us to make predictions for the stellar orbits and gas properties of these misaligned galaxies.