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Rapid Lyapunov control of finite-dimensional quantum systems

机译:快速Lyapunov控制有限维量子系统

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Rapid state control of quantum systems is significant in reducing the influence of relaxation or decoherence caused by the environment and enhancing the capability in dealing with uncertainties in the model and control process. Bang-bang Lyapunov control can speed up the control process, but cannot guarantee convergence to a target state. This paper proposes two classes of new Lyapunov control methods that can achieve rapidly convergent control for quantum states. One class is switching Lyapunov control where the control law is designed by switching between bang-bang Lyapunov control and standard Lyapunov control. The other class is approximate bang-bang Lyapunov control where we propose two special control functions which are continuously differentiable and yet have a bang-bang type property. Related stability results are given and a construction method for the degrees of freedom in the Lyapunov function is presented to guarantee rapid convergence to a target eigenstate being isolated in the invariant set. Several numerical examples demonstrate that the proposed methods can achieve improved performance for rapid state control of quantum systems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:量子系统的快速状态控制对于降低环境引起的弛豫或干式的影响并提高了在模型和控制过程中处理不确定性的能力。 Bang-Bang Lyapunov控制可以加快控制过程,但不能保证对目标状态的融合。本文提出了两类新的Lyapunov控制方法,可以实现量子态的快速收敛控制。一类正在切换Lyapunov控制,其中通过在Bang-Bang Lyapunov控制和标准Lyapunov控制之间切换来设计控制法。另一类是近似Bang-Bang Lyapunov控制,我们提出了两种特殊的控制功能,这些功能是不断差异的,但具有Bang-Bang型属性。给出了相关的稳定性结果,并提出了Lyapunov功能中的自由度的施工方法,以保证在不变集中隔离的目标特征的快速收敛性。若干数值示例表明,所提出的方法可以实现对量子系统的快速状态控制的改进性能。 (c)2017 Elsevier Ltd.保留所有权利。

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