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Preparation of Hadamard Gate for Open Quantum Systems by the Lyapunov Control Method

机译:Lyapunov控制法制备开放量子系统Hadamard门。

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In this paper, the control laws based on the Lyapunov stability theorem are designed for a two-level open quantum system to prepare the Hadamard gate, which is an important basic gate for the quantum computers. First, the density matrix interested in quantum system is transferred to vector formation.Then, in order to obtain a controller with higher accuracy and faster convergence rate, a Lyapunov function based on the matrix logarithm function is designed. After that, a procedure for the controller design is derived based on the Lyapunov stability theorem. Finally, the numerical simulation experiments for an amplitude damping Markovian open quantum system are performed to prepare the desired quantum gate. The simulation results show that the preparation of Hadamard gate based on the proposed control laws can achieve the fidelity up to 0.9985 for the different coupling strengths.
机译:本文基于李雅普诺夫稳定性定理,设计了一个两级开放量子系统的控制律,以制备哈达玛门,该门是量子计算机的重要基础门。首先将对量子系统感兴趣的密度矩阵转移到矢量形成中,然后为了获得具有更高精度和更快收敛速度​​的控制器,设计了基于矩阵对数函数的Lyapunov函数。然后,基于李雅普诺夫稳定性定理推导控制器的设计过程。最后,对振幅阻尼马氏开放量子系统进行了数值模拟实验,以制备所需的量子门。仿真结果表明,针对不同的耦合强度,根据所提出的控制规律制备哈达玛门可以达到高达0.9985的保真度。

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