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Elliptic tori in FPU non-linear chains with a small number of nodes

机译:FPU中的椭圆形Tori非线性链,少量节点

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We revisit an algorithm constructing elliptic tori, that was originally designed for applications to planetary hamiltonian systems. The scheme is adapted to properly work with models of chains of N + 1 particles interacting via anharmonic potentials, thus covering also the case of FPU chains. After having preliminarily settled the Hamiltonian in a suitable way, we perform a sequence of canonical transformations removing the undesired perturbative terms by an iterative procedure. This is done by using the Lie series approach, that is explicitly implemented in a programming code with the help of a software package, which is especially designed for computer algebra manipulations. In the cases of FPU chains with N = 4 , 8 , we successfully apply our new algorithm to the construction of elliptic tori for wide sets of the parameter ruling the size of the perturbation, i.e., the total energy of the system. Moreover, we explore the stability regions surrounding 1D elliptic tori. We compare our semi-analytical results with those provided by numerical explorations of the FPU-model dynamics, where the latter ones are obtained by using techniques based on the so called frequency analysis. We find that our procedure works up to values of the total energy that are of the same order of magnitude with respect to the maximal ones, for which elliptic tori are detected by numerical methods. ? 2021 Elsevier B.V. All rights reserved.
机译:我们重新审视构建椭圆Tori的算法,最初为应用程序设计为行星哈密顿系统。该方案适于适当地使用通过Anharmonic电位相互作用的N + 1颗粒的链型,因此也覆盖FPU链的情况。在以合适的方式预先定位Hamiltonian之后,我们通过迭代程序执行一系列规范转化,从而通过迭代程序去除不期望的扰动项。这是通过使用Lie系列方法来完成的,该方法在软件包的帮助下在编程代码中明确实现,该软件包专为计算机代数操纵而设计。在FPU链的情况下,使用n = 4,8,我们成功地将新算法应用于椭圆矩阵的构造,以实现宽套参数测定扰动的大小,即系统的总能量。此外,我们探讨了围绕1D椭圆织物的稳定区域。我们将我们的半分析结果与由FPU-Model动态的数值探索提供的那些进行比较,其中后者通过基于所谓的频率分析使用技术获得。我们发现我们的程序工作到相对于最大值的总功率的值,相对于最大数量,通过数值方法检测到椭圆形Tori。还是2021 elestvier b.v.保留所有权利。

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