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受扰潘宁阱中单个离子的动力学:八极扰动

Dynamics of a single ion in a perturbed Penning trap: octupolar perturbation.

作者信息

Lara Martín, Salas J Pablo

机构信息

Real Observatorio de la Armada, 11110 San Fernando, Spain.

出版信息

Chaos. 2004 Sep;14(3):763-73. doi: 10.1063/1.1775331.

Abstract

Imperfections in the design or implementation of Penning traps may give rise to electrostatic perturbations that introduce nonlinearities in the dynamics. In this paper we investigate, from the point of view of classical mechanics, the dynamics of a single ion trapped in a Penning trap perturbed by an octupolar perturbation. Because of the axial symmetry of the problem, the system has two degrees of freedom. Hence, this model is ideal to be managed by numerical techniques like continuation of families of periodic orbits and Poincaré surfaces of section. We find that, through the variation of the two parameters controlling the dynamics, several periodic orbits emanate from two fundamental periodic orbits. This process produces important changes (bifurcations) in the phase space structure leading to chaotic behavior.

摘要

彭宁阱设计或实施中的缺陷可能会引发静电扰动,从而在动力学中引入非线性。在本文中,我们从经典力学的角度研究了单个离子在受八极扰动的彭宁阱中的动力学。由于问题具有轴对称性,该系统有两个自由度。因此,这个模型非常适合用诸如周期轨道族的延拓和庞加莱截面等数值技术来处理。我们发现,通过控制动力学的两个参数的变化,几个周期轨道从两个基本周期轨道产生。这个过程在相空间结构中产生了重要变化(分岔),从而导致混沌行为。

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