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周期性剧烈踢动的振荡器。

Periodically kicked hard oscillators.

作者信息

Cecchi G. A., Gonzalez D. L., Magnasco M. O., Mindlin G. B., Piro O., Santillan A. J.

机构信息

Departamento de Fisica, U.N.L.P., ArgentinaSezione di Cinematografia Scientifica, C.N.R., BolognaThe James Franck Institute, The University of Chicago, Chicago, Illinois 60637Department of Physics and Atomic Sciences, Drexel University, Philadelphia, Pennsylvania 19104Mathematics Department, Queen Mary College, LondonDepartamento de Fisica, U.N.L.P., Argentina.

出版信息

Chaos. 1993 Jan;3(1):51-62. doi: 10.1063/1.165978.

Abstract

A model of a hard oscillator with analytic solution is presented. Its behavior under periodic kicking, for which a closed form stroboscopic map can be obtained, is studied. It is shown that the general structure of such an oscillator includes four distinct regions; the outer two regions correspond to very small or very large amplitude of the external force and match the corresponding regions in soft oscillators (invertible degree one and degree zero circle maps, respectively). There are two new regions for intermediate amplitude of the forcing. Region 3 corresponds to moderate high forcing, and is intrinsic to hard oscillators; it is characterized by discontinuous circle maps with a flat segment. Region 2 (low moderate forcing) has a certain resemblance to a similar region in soft oscillators (noninvertible degree one circle maps); however, the limit set of the dynamics in this region is not a circle, but a branched manifold, obtained as the tangent union of a circle and an interval; the topological structure of this object is generated by the finite size of the repelling set, and is therefore also intrinsic to hard oscillators.

摘要

本文提出了一个具有解析解的硬振荡器模型。研究了其在周期性驱动下的行为,对于这种情况可以得到一个封闭形式的频闪映射。结果表明,这种振荡器的一般结构包括四个不同的区域;外部的两个区域分别对应于外力振幅非常小或非常大的情况,并且与软振荡器中的相应区域相匹配(分别为可逆的一度和零度圆映射)。对于中等振幅的驱动力存在两个新的区域。区域3对应于中等高强度的驱动,这是硬振荡器所特有的;其特征是具有一个平坦段的不连续圆映射。区域2(低中等驱动)与软振荡器中的类似区域(不可逆的一度圆映射)有一定的相似性;然而,该区域动力学的极限集不是一个圆,而是一个分支流形,它是通过一个圆和一个区间的切并得到的;这个对象的拓扑结构是由排斥集的有限大小产生的,因此也是硬振荡器所特有的。

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