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Counter-rotating disks in galaxies: dissecting kinematics and stellar populations with 3D spectroscopy

机译:在星系中反向旋转磁盘:用3D光谱解剖运动学和恒星种群

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We present a spectral decomposition technique that separates the contribution of different kinematic components in galaxies from the observed spectrum. This allows to study the kinematics and properties of the stellar populations of the individual components (e.g., bulge, disk, counter-rotating cores, orthogonal structures). Here, we discuss the results of this technique for galaxies that host counter-rotating stellar disks of comparable size. In all the studied cases, the counter-rotating stellar disk is the less massive, the youngest and has different chemical content (metallicity and a-elements abundance ratio) than the main galaxy disk. Further applications of the spectral decomposition technique are also discussed.
机译:我们提出了一种光谱分解技术,将不同运动组分的贡献与观察到的光谱分开。这允许研究各个组分的恒星群的运动学和性质(例如,凸起,盘,反向旋转核,正交结构)。在这里,我们讨论了对托管可比尺寸的反向旋转恒星磁盘的星系技术的这种技术的结果。在所有研究的情况下,反向旋转的恒星盘比主要的星系盘越小,最小,最小,并且具有不同的化学含量(金属性和元素丰度)。还讨论了光谱分解技术的进一步应用。

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