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Quantum walks with dynamical control: graph engineering, initial state preparation and state transfer

机译:量子行走与动态控制:图工程,初始状态准备和状态转移

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Quantum walks are a well-established model for the study of coherent transport phenomena and provide a universal platform in quantum information theory. Dynamically influencing the walker's evolution gives a high degree of flexibility for studying various applications. Here, we present time-multiplexed finite quantum walks of variable size, the preparation of non-localised input states and their dynamical evolution. As a further application, we implement a state transfer scheme for an arbitrary input state to two different output modes. The presented experiments rely on the full dynamical control of a time-multiplexed quantum walk, which includes adjustable coin operation as well as the possibility to flexibly configure the underlying graph structures.
机译:量子行走是研究相干输运现象的公认模型,并为量子信息理论提供了一个通用平台。动态影响助行器的发展为研究各种应用提供了高度的灵活性。在这里,我们介绍了可变大小的时分复用有限量子游走,非局部输入状态的准备及其动态演化。作为进一步的应用,我们实现了一种状态转换方案,用于将任意输入状态转换为两种不同的输出模式。提出的实验依赖于时分多路复用量子行走的完全动力学控制,其中包括可调硬币操作以及灵活配置底层图形结构的可能性。

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