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Dissipative motion in galaxies with non-axisymmetric potentials

机译:具有非轴对称电位的星系中的耗散运动

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In contrast to the case of most other topics treated in this volume, it is not clear whether galactic gas dynamics can be discussed in terms of standard hydrodynamics. Nevertheless, it is clear that certain generic properties related to orbital structure in a given potential and the effect of dissipation can be used to understand qualitatively gas motion in galaxies. The effect of dissipation is examined in triaxial galaxy potentials with and without rotating time-dependent components. In the former case, dissipative trajectories settle around closed-loop orbits when these exist. When they do not, e.g., inside a constant density core, then the only attractor is the centre and this leads to mass inflow. This provides a self-regulating mechanism for accession of material towards the centre - since the formation of a central masses destroys the central density core and eventually stops the accession. In the case when a rotating bar is present, there are usually several types of attractors, including those on which long-lived chaotic motion can occur (strange attractors). Motion on these is erratic with large radial and vertical oscillations. (C) 1999 Elsevier Science B.V. All rights reserved. [References: 24]
机译:与本卷中讨论的大多数其他主题相反,尚不清楚是否可以根据标准流体动力学来讨论银河系气体动力学。然而,很明显,在给定的电位下与轨道结构有关的某些一般性质以及耗散的影响可以用来定性地了解星系中的气体运动。在具有和不具有旋转时间相关分量的三轴星系电势中检查了耗散的影响。在前一种情况下,耗散轨迹在存在时闭环轨道附近。当它们不在例如恒定密度的芯内部时,则唯一的吸引子是中心,这导致质量流入。这提供了一种自我调节的机制,使物料向中心进入-因为形成一个中心块会破坏中心密度核心,并最终阻止该进入。在存在旋转棒的情况下,通常有几种类型的吸引子,包括可能发生长寿命混沌运动的吸引子(奇怪的吸引子)。径向和垂直振动较大时,它们的运动不稳定。 (C)1999 Elsevier Science B.V.保留所有权利。 [参考:24]

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