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A Survey of Quantum Lyapunov Control Methods

机译:量子Lyapunov控制方法概述

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摘要

The condition of a quantum Lyapunov-based control which can be well used in a closed quantum system is that the method can make the system convergent but not just stable. In the convergence study of the quantum Lyapunov control, two situations are classified: nondegenerate cases and degenerate cases. For these two situations, respectively, in this paper the target state is divided into four categories: the eigenstate, the mixed state which commutes with the internal Hamiltonian, the superposition state, and the mixed state which does not commute with the internal Hamiltonian. For these four categories, the quantum Lyapunov control methods for the closed quantum systems are summarized and analyzed. Particularly, the convergence of the control system to the different target states is reviewed, and how to make the convergence conditions be satisfied is summarized and analyzed.
机译:可以在封闭量子系统中很好地使用的基于Lyapunov量子控制的条件是,该方法可以使系统收敛,而不仅仅是稳定。在量子李雅普诺夫控制的收敛性研究中,分类了两种情况:非退化情况和退化情况。在这两种情况下,本文分别将目标状态分为四类:特征状态,与内部哈密顿量交换的混合状态,叠加状态和与内部哈密顿量不交换的混合状态。对于这四个类别,总结并分析了封闭量子系统的量子Lyapunov控制方法。特别地,回顾了控制系统对不同目标状态的收敛性,并总结和分析了如何使收敛性条件得到满足。

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