Multiple pattern speeds and the manifold spirals in a simulation of a barred spiral galaxy

K. Zouloumi, M. Harsoula, C. Efthymiopoulos
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Abstract

Observations of real galaxies as well as N-body simulations often indicate the presence of multiple pattern speeds in the disc of a barred spiral galaxy. In the present paper we use an accurate frequency extraction algorithm (NAFF) to determine the pattern speeds in a N-body model simulation of a secularly evolving barred spiral galaxy. Then, we compute the manifold spirals under multiple pattern speeds using the algorithm proposed in a previous paper by Efthymiopoulos et al. Our main new results are: i) We demonstrate that precise frequency extraction algorithms as NAFF allow for a determination of pattern speeds in time windows of length much shorter than the one required by the traditional time-Fourier spectrum of the m = 2 mode. This is particularly convenient in cases where the pattern speeds slowly change in time due to secular evolution in the disc, and/or, the different modes spatially overlap in the disc. ii) Once we get the frequences, we compute the approximate gravitational potential, and the manifolds iii) We show that the observed structures formed by the spiral arms in the simulation (change of form, formation of ‘bridges’, etc.) can be modelled by manifolds, and that this is consistent with the fact that the bar and spirals have different pattern speeds.
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条状旋涡星系模拟中的多重模式速度和流形旋涡
对真实星系的观测和 N-体模拟经常表明,棒旋星系的盘面存在多种模式速度。在本文中,我们使用一种精确的频率提取算法(NAFF)来确定N-体模型模拟中恒定演化的棒旋星系的模式速度。我们的主要新成果有:i) 我们证明了精确的频率提取算法(NAFF)可以在比传统的 m = 2 模式的时间-傅里叶频谱所要求的时间窗口长度短得多的时间窗口内确定模式速度。ii) 一旦得到频率,我们就可以计算近似引力势和流形 iii) 我们证明,在模拟中观察到的旋臂形成的结构(形态变化、"桥 "的形成等)可以用流形来模拟,这与条形和螺旋形具有不同的模式速度这一事实是一致的。
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