论文标题

复杂轨迹控制量子混乱

Quantum Chaos Control by Complex Trajectories

论文作者

Yang, Ciann-Dong, Chen, Yen-Jiun, Lee, Yun-Yan

论文摘要

近年来,量子混乱的分析和控制越来越重要,但是缺乏轨迹概念使得无法通过经典混乱中使用的方法分析量子混乱。这项研究旨在通过复杂的力学将牛顿的世界与量子世界联系起来,以便可以通过复杂扩展的牛顿力学分析和控制量子混乱。通过复杂力学的桥梁,在本文中,我们通过复合值的动态方程式对2D带电的各向异性谐波振荡器进行建模,该方程基于该方程,可以使用经典混乱中使用的知名方法来分析量子混乱。借助已建立的量子动态模型,我们应用了滑动模式控制方法来控制所考虑的量子系统的混沌量子行为。模拟结果表明,通过提出的混乱控制可以将混乱的动作更改为周期性动作,同时,在存在初始条件的变化的情况下,可以实现混乱同步。这里引入了几个混乱的签名,以证明在滑动模式控制法下的周期性过程的混乱是合理的。

In recent years, analysis and control of quantum chaos are increasingly important, but the lack of the concept of trajectory makes it impossible to analyze quantum chaos by the methods used in classical chaos. This research aims to connect Newton's world to the quantum world by the complex mechanics so that quantum chaos can be analyzed and controlled by the complex-extended Newtonian mechanics. Through the bridge of complex mechanics, in this article, we model quantum motions for 2D charged anisotropic harmonic oscillator by complex-valued dynamic equations, based on which quantum chaos can be analyzed by using well-known methods used in classical chaos. With the established quantum dynamic model, we then apply the sliding-mode control method to control the chaotic quantum behavior of the considered quantum system. The simulation results show that chaotic motions can be changed into periodic motions by the proposed chaos control and meanwhile, chaos synchronization can be achieved in the presence of variations of initial conditions. Several signatures of chaos are introduced here to justify the chaos of the periodicity process under the sliding-mode control law.

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