相空间畸变是解开星系棒屈曲的关键

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Viktor D. Zozulia, Natalia Ya. Sotnikova, Anton A. Smirnov
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引用次数: 0

摘要

本文首次利用作用角变量研究了n体星系棒在屈曲阶段的共振结构。我们研究了棒材中所有轨道的垂直作用(Jz)和与垂直共振相关的角(θres = θz−θR)的演化。为此,我们根据轨道相对于固定点θres = 0和π(垂直共振)的共振角的行为(振动或循环)将轨道分为几种类型。我们发现,在屈曲过程中,以增加θres循环的扁棒轨道转变为香蕉形的振动轨道(共振捕获)或以降低θres(共振加热)循环轨道。轨道的转变伴随着Jz的增加和一个四方形或花生状凸起的形成。在屈曲过程中,相空间Jz−θres发生畸变,在定点θres = 0和π的位置以及这些点附近的香蕉形轨道中产生不对称。不动点θres = 0可能完全消失。这也打破了轨道之间的对称性,轨道在θres = 0和π附近随着θres的减小而进入共振或循环。同时,在θres = 0附近,出现了具有低垂直作用Jz的香蕉形轨道。这重新打开了通过固定点θres = 0的轨道变换路径。相空间变换和轨道变换协调进行,使相空间扰动平滑,恢复轨道间的对称性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase-space distortion as a key to unraveling galactic bar buckling
For the first time, we investigate the resonant structure of N-body galactic bar at the stage of buckling using action-angle variables. We studied the evolution of vertical actions (Jz) and angles associated with vertical resonance (θres = θz − θR) for all orbits in the bar. For this purpose, we divided the orbits into types according to the behavior (libration or circulation) of their resonant angle with respect to fixed points θres = 0 and π (vertical resonance). We show that during buckling, flat bar orbits circulating with increasing θres transformed into banana-shaped librating orbits (resonant capture) or circulating orbits with decreasing θres (resonant heating). The orbital transformation is accompanied by an increase in Jz and the formation of a boxy- or peanut-shaped bulge. During buckling, the phase space Jz − θres undergoes a distortion creating an asymmetry in the position of the fixed points θres = 0 and π and in banana-shaped orbits near these points. The fixed point θres = 0 may disappear completely. This also breaks the symmetry between the orbits, which are captured into resonance or go into circulation with decreasing θres near θres = 0 and π. At the same time, near θres = 0, banana-shaped orbits with low vertical action Jz appear. This reopens the path of orbital transformation through the fixed point, θres = 0. The phase space transformation and orbit transformation occur in a coordinated manner and lead to the smoothing of phase space perturbations and restoration of symmetry between orbits.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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