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Establishing formal state space models via quantization for quantum control systems

机译:通过量化为量子控制系统建立形式状态空间模型

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Formal state space models of quantum control systems are deduced and a scheme to establish formal state space models via quantization could been obtained for quantum control systems is proposed. State evolution of quantum control systems must accord with Schrodinger equations, so it is foremost to obtain Hamiltonian operators of systems. There are corresponding relations between operators of quantum systems and corresponding physical quantities of classical systems,such as momentum, energy and Hamiltonian, so Schrodinger equation models of corresponding quantum control systems via quantization could been obtained from classical control systems, and then establish formal state space models through the suitable transformation from Schrodinger equations for these quantum control systems. This method provides a new kind of path for modeling in quantum control.
机译:推导了量子控制系统的形式状态空间模型,提出了一种通过量化建立形式化状态空间模型的方案。量子控制系统的状态演化必须符合Schrodinger方程,因此最重要的是获得系统的哈密顿算子。量子系统的算符与经典系统的相应物理量(例如动量,能量和哈密顿量)之间存在对应关系,因此可以通过经典控制系统通过量化获得相应量子控制系统的薛定inger方程模型,然后建立形式状态空间通过针对这些量子控制系统的Schrodinger方程进行适当的变换来建立模型。该方法为量子控制中的建模提供了一种新的途径。

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