论文标题

可编程量子步行中的任意连贯分布

Arbitrary coherent distributions in a programmable quantum walk

论文作者

Zhang, Rong, Yang, Ran, Guo, Jian, Sun, Chang-Wei, Liu, Yi-Chen, Zhou, Heng, Xu, Ping, Xie, Zhenda, Gong, Yan-Xiao, Zhu, Shi-Ning

论文摘要

量子步行(QW)中位置状态的一致叠加可以精确地针对所需的分布,以满足量子信息应用的需求。相干分布可以在计算和仿真中充分利用量子平行。特别是,统一的叠加提供了可靠的非局部性,该非本地性具有广泛的应用,例如生成真正的多位随机数而无需后处理。我们通过实验表明,可以通过引入不同的时间和位置依赖性操作来获得具有任意相干分布的丰富动态。这样的QW是由资源稳定和灵活的光学电路实现的,其中可变操作是基于SAGNAC干涉仪以本质上稳定且精确控制的方式执行的。我们的结果有助于实现基于量子 - 步行的量子计算,量子模拟和量子信息协议。

The coherent superposition of position states in a quantum walk (QW) can be precisely engineered towards the desired distributions to meet the need of quantum information applications. The coherent distribution can make full use of quantum parallel in computation and simulation. Particularly, the uniform superposition provides the robust non-locality, which has wide applications such as the generation of genuine multi-bit random numbers without post-processing. We experimentally demonstrate that the rich dynamics featured with arbitrary coherent distributions can be obtained by introducing different sets of the time- and position-dependent operations. Such a QW is realized by a resource-constant and flexible optical circuit, in which the variable operation is executed based on a Sagnac interferometer in an intrinsically stable and precisely controlled way. Our results contribute to the practical realization of quantum-walk-based quantum computation, quantum simulations and quantum information protocols.

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