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Quantum control landscapes

机译:量子控制格局

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Numerous lines of experimental, numerical and analytical evidence indicate that it is surprisingly easy to locate optimal controls steering quantum dynamical systems to desired objectives. This has enabled the control of complex quantum systems despite the expense of solving the Schrodinger equation in simulations and the complicating effects of environmental decoherence in the laboratory. Recent work indicates that this simplicity originates in universal properties of the solution sets to quantum control problems that are fundamentally different from their classical counterparts. Here, we review studies that aim to systematically characterize these properties, enabling the classification of quantum control mechanisms and the design of globally efficient quantum control algorithms.
机译:大量的实验,数值和分析证据表明,找到最佳的控制装置很容易,它可以将量子动力学系统导向所需的目标。尽管在仿真中解决Schrodinger方程的费用高昂,而且在实验室中环境退相干的影响复杂化,但这仍然可以控制复杂的量子系统。最近的工作表明,这种简单性源自解决方案集的通用性质,该性质是量子控制问题的根本不同于经典的量子控制问题。在这里,我们回顾旨在系统地表征这些特性的研究,从而实现量子控制机制的分类和全球有效的量子控制算法的设计。

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