论文标题

Illustristng星系中的极端运动学错位:星系的起源,结构和内部动力学,具有大规模的反旋转

Extreme kinematic misalignment in IllustrisTNG galaxies: the origin, structure and internal dynamics of galaxies with a large-scale counterrotation

论文作者

Khoperskov, Sergey, Zinchenko, Igor, Avramov, Branislav, Khrapov, Sergey, Berczik, Peter, Saburova, Anna, Ishchenko, Marina, Khoperskov, Alexander, Pulsoni, Claudia, Venichenko, Yulia, Bizyaev, Dmitry, Moiseev, Alexei

论文摘要

现代星系形成理论表明,恒星和气态成分之间的错位通常是由于外部气体积聚和/或与其他星系的相互作用而引起的。所谓的反旋转的所谓星系证明了运动学错位的极端情况,这些星系具有两个不同的组件相对于彼此相反的方向旋转。我们提供了与Illustristng100宇宙学模拟的反转播的星系中的深入分析。我们发现$ 25 $的星系在$ 2 \ times10^{9} -3 \ times10^{10} $〜\ msun的恒星质量范围内具有很大的出色反向旋转。在我们的样本中,恒星反旋转是外部气体中心发生$ \ 2-8 $ 〜gyr的结果。该插座导致初始去除的气体,该气体被捕获并与输入成分混合在一起。气体混合物结束在反向旋转的气态盘中。我们表明,在反射气体中形成的恒星反交易的约90 \%$。在插入的早期阶段,可以在倾斜的延伸且相当薄的圆盘状结构中发现气体,在某些星系中,它们类似于(几乎 - )〜极地盘或环状结构。我们讨论气体中心,AGN活性与未对准成分的形成之间的可能联系。特别是,我们建议AGN活性不会引起反向转向,尽管它是由逆行气体中心有效触发的,并且与未对齐的成分外观良好相关。我们还发现可见的恒星光盘加热的证据是在共同和反射组件中垂直到宽度速度的分散率的增加,这意味着运动学错位在塑造脱节的速度椭圆形中的重要性。

Modern galaxy formation theory suggests that the misalignment between stellar and gaseous components usually results from an external gas accretion and/or interaction with other galaxies. The extreme case of the kinematic misalignment is demonstrated by so-called galaxies with counterrotation that possess two distinct components rotating in opposite directions with respect to each other. We provide an in-deep analysis of galaxies with counterrotation from IllustrisTNG100 cosmological simulations. We have found $25$ galaxies with substantial stellar counterrotation in the stellar mass range of $2\times10^{9}-3\times10^{10}$~\Msun. In our sample the stellar counterrotation is a result of an external gas infall happened $\approx 2-8$~Gyr ago. The infall leads to the initial removal of pre-existing gas, which is captured and mixed together with the infalling component. The gas mixture ends up in the counterrotating gaseous disc. We show that $\approx 90\%$ of the stellar counterrotation formed in-situ, in the counterrotating gas. During the early phases of the infall, gas can be found in inclined extended and rather thin disc-like structures, and in some galaxies they are similar to (nearly-)~polar disc or ring-like structures. We discuss a possible link between the gas infall, AGN activity and the formation of misaligned components. In particular, we suggest that the AGN activity does not cause the counterrotation, although it is efficiently triggered by the retrograde gas infall, and it correlates well with the misaligned component appearance. We also find evidence of the stellar disc heating visible as an increase of the vertical-to-radial velocity dispersion ratio above unity in both co- and counterrotating components, which implies the importance of the kinematical misalignment in shaping the velocity ellipsoids in disc galaxies.

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