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Rotation of classical bulges during secular evolution of barred galaxies

机译:禁止星系的世俗演变过程中古典凸起的旋转

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Bar driven secular evolution plays a key role in changing the morphology and kinematics of disk galaxies, leading to the formation of rapidly rotating boxy/peanut bulges. If these disk galaxies also hosted a preexisting classical bulge, how would the secular evolution influence the classical bulge, and also the observational properties. We first study the co-evolution of a bar and a preexisting non-rotating low-mass classical bulge such as might be present in galaxies like the Milky Way. It is shown with N-body simulations that during the secular evolution, such a bulge can gain significant angular momentum emitted by the bar through resonant and stochastic orbits. Thereby it transforms into a cylindrically rotating, anisotropic and triaxial object, embedded in the fast rotating boxy bulge that forms via disk instability (Saha et al. 2012). The composite boxy/peanut bulge also rotates cylindrically. We then show that the growth of the bar depends only slightly on the rotation properties of the preexisting classical bulge. For the initially rotating small classical bulge, cylindrical rotation in the resulting composite boxy/peanut bulge extends to lower heights (Saha & Gerhard 2013). More massive classical bulges also gain angular momentum emitted by the bar, inducing surprisingly large rotational support within about 4 Gyrs (Saha et al. in prep).
机译:Bar驱动的世俗演变在改变磁盘星系的形态和运动学方面发挥着关键作用,从而形成迅速旋转的箱/花生凸起。如果这些磁盘星系也托管了预先存在的古典凸起,世俗演变将如何影响古典凸起,以及观察性质。我们首先研究杆的共同演变和预先存在的非旋转低质量古典凸起,如可能存在于银河系中的星系中。它显示出具有N-obil模拟的,在世俗演变期间,这种凸起可以通过谐振和随机轨道产生由杆发射的显着角度动量。由此,它变换成圆柱形旋转,各向异性和三轴物体,嵌入在通过盘不稳定(Saha等,2012)形成的快速旋转盒凸起。复合盒/花生凸起也圆柱形旋转。然后,我们表明杆的生长仅略微逐渐取决于预先存在的古典凸起的旋转性质。对于最初旋转的小型凸起,所得到的复合盒/花生凸起中的圆柱形旋转延伸至较低的高度(Saha&Gerhard 2013)。更多巨大的古典凸起还获得了杆发出的角动量,在约4个Gyrs(Saha等人在制备)内诱导大量的旋转支撑。

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