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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Free-time and fixed end-point multi-target optimal control theory: Application to quantum computing
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Free-time and fixed end-point multi-target optimal control theory: Application to quantum computing

机译:自由时间和固定端点多目标最优控制理论:在量子计算中的应用

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摘要

An extension of free-time and fixed end-point optimal control theory (FRFP-OCT) to monotonically convergent free-time and fixed end-point multi-target optimal control theory (FRFP-MTOCT) is presented. The features of our theory include optimization of the external time-dependent perturbations with high transition probabilities, that of the temporal duration, the monotonic convergence, and the ability to optimize multiple-laser pulses simultaneously. The advantage of the theory and a comparison with conventional fixed-time and fixed end-point multi-target optimal control theory (FIFP-MTOCT) are presented by comparing data calculated using the present theory with those published previously [K. Mishima, K. Yamashita, Chem. Phys. 361, (2009), 106]. The qubit system of our interest consists of two polar NaCl molecules coupled by dipole-dipole interaction. The calculation examples show that our theory is useful for minor adjustment of the external fields.
机译:提出了将自由时间和固定端点最优控制理论(FRFP-OCT)扩展为单调收敛的自由时间和固定端点多目标最优控制理论(FRFP-MTOCT)。我们理论的特征包括优化具有高跃迁概率的外部时间相关扰动,时间持续时间,单调收敛以及同时优化多激光脉冲的能力。通过将使用本理论计算的数据与先前发布的数据进行比较,可以得出该理论的优势以及与常规固定时间和固定端点多目标最优控制理论的比较。三岛K.山下化学物理361,(2009),106]。我们感兴趣的量子系统由两个偶极-偶极相互作用耦合的极性NaCl分子组成。计算实例表明,我们的理论对外部场的微小调整很有用。

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