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Feedback preparation of Bell states for two-qubit systems with time delay

机译:具有时滞的两比特系统的贝尔状态的反馈准备

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Bell states are the maximally entangled states in two-qubit quantum systems, and play a significant role in quantum computation and quantum communication. Feedback control of stochastic quantum systems usually suffers from time-delay problems caused by the computation time for filter states and the control input. This paper addresses the preparation of Bell states in two-qubit systems with a constant delay time. A Lyapunov method is used to design a switching control law and a constant is introduced to compensate for the computation time of the estimated states and the feedback control input, thereby stabilizing the target Bell state globally. Numerical results show the effectiveness of the proposed control law.
机译:贝尔状态是两种Qubit量子系统中最大纠缠的状态,并在量子计算和量子通信中发挥重要作用。随机量子系统的反馈控制通常存在由滤波器状态和控制输入的计算时间引起的延时问题。本文涉及具有恒定延迟时间的双量标系统中的贝尔状态的准备。 Lyapunov方法用于设计切换控制定律,并引入常数以补偿估计状态的计算时间和反馈控制输入,从而稳定全球目标钟状态。数值结果表明了拟议的控制法的有效性。

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