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Analysis and control of closed quantum systems based on real-valued dynamics [Brief Paper]

机译:基于实值动力学的封闭量子系统的分析与控制[简介]

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摘要

This study aims to facilitate quantum control design by making use of derived real-valued equations, which are equivalent to the Schrodinger equation. First, a pure-state identification approach is presented to show that a quantum state can be determined by a minimum number of real parameters. Second, the real-valued equations are deduced for both two- and three-level systems based on the results of the state parametrisation. The procedure is also extended to n-level systems. Third, with the assistance of the derived real-valued equations, the state transfer problem is investigated based on Lyapunov analysis. The state transfer convergence is analysed. It is further shown how to achieve arbitrary pure state transfers via the Lyapunov method by designing the control. The real-valued equations provide a convenient way for theoretical analysis and control design of quantum systems, and therefore can assist in the implementation of quantum control. The state transfer convergence is analysed. It is further shown how to achieve arbitrary pure-state transfers via the Lyapunov method by designing the control.
机译:这项研究旨在通过使用等效于Schrodinger方程的派生实值方程来促进量子控制设计。首先,提出了一种纯态识别方法,以表明可以通过最少数量的实参确定量子态。其次,根据状态参数化的结果推导出两级和三级系统的实值方程。该过程也扩展到n级系统。第三,借助导出的实值方程,基于Lyapunov分析研究状态转移问题。分析了状态转移收敛。进一步显示了如何通过设计控件通过Lyapunov方法实现任意纯状态转移。实值方程为量子系统的理论分析和控制设计提供了方便的途径,因此可以帮助实现量子控制。分析了状态转移收敛。进一步显示了如何通过设计控件通过Lyapunov方法实现任意纯态传输。

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  • 来源
    《Control Theory & Applications, IET》 |2012年第16期|p.2576-2584|共9页
  • 作者

    Xue Z.; Lin H.; Lee T.H.;

  • 作者单位

    NUS Graduate School for Integrative Sciences andTechnology, National University of Singapore, Singapore 117456, Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
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