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Classifying orbits in a new dynamical model describing motion in a prolate or an oblate elliptical galaxy

机译:在描述扁长或扁圆椭圆星系运动的新动力学模型中对轨道进行分类

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The regular or chaotic character of orbits of stars moving in the meridional plane (R,z) of an axially symmetric elliptical galaxy with a dense, massive spherical nucleus and a dark matter halo component is under investigation. In particular, we explore how the flattening of an elliptical galaxy influences the overall orbital structure of the system, by computing in each case the percentage of chaotic orbits, as well as the percentages of orbits composing the main regular families. In an attempt to discriminate safely and with certainty between regular and chaotic motion, we use the Smaller ALingment Index (SALI) method to extensive samples of orbits obtained by integrating numerically the basic equations of motion as well as the variational equations. In addition, a technique which is based mainly on the field of spectral dynamics that utilizes the Fourier transform of the time series of each coordinate is used for classifying the regular orbits into different families and also to recognize the secondary resonances that usually bifurcate from them. Three cases are considered in our work: (i) the case where the elliptical galaxy is prolate (ii) the case where a spherically symmetric elliptical galaxy is present and (iii) the case where the elliptical galaxy has an oblate shape. Comparison between the current results and early related work is also made.
机译:正在研究具有密集,块状球形核和暗物质晕分量的轴对称椭圆星系的子午面(R,z)的恒星轨道的规则或混沌特性。特别是,我们通过计算每种情况下混沌轨道的百分比以及组成主要规则族的轨道百分比,来探索椭圆形星系的展平如何影响系统的整体轨道结构。为了安全,可靠地区分规则运动和混沌运动,我们使用较小的ALingment指数(SALI)方法对通过对运动基本方程和变分方程进行数值积分而获得的大量轨道样本。另外,主要基于频谱动力学领域的技术利用每个坐标的时间序列的傅立叶变换来将规则轨道分类为不同的族,并且还识别通常从它们分叉的二次共振。在我们的工作中考虑了三种情况:(i)椭圆星系呈扁长形的情况(ii)存在球形对称椭圆星系的情况,以及(iii)椭圆形星系的形状为扁圆形的情况。还比较了当前结果和早期相关工作。

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