Qu Dengke, Marsh Samuel, Wang Kunkun, Xiao Lei, Wang Jingbo, Xue Peng
Beijing Computational Science Research Center, Beijing 100084, China.
Department of Physics, Southeast University, Nanjing 211189, China.
Phys Rev Lett. 2022 Feb 4;128(5):050501. doi: 10.1103/PhysRevLett.128.050501.
We propose a novel algorithm for quantum spatial search on a star graph using interleaved continuous-time quantum walks and marking oracle queries. Initializing the system in the star's central vertex, we determine the optimal quantum walk times to reach full overlap with the marked state using ⌈(π/4)sqrt[N]-(1/2)⌉ oracle queries, matching the well-known lower bound of Grover's search. We implement the deterministic search in a database of size seven on photonic quantum hardware, and demonstrate the effective scaling of the approach up to size 115. This is the first experimental demonstration of quantum walk-based search on the highly noise-resistant star graph, which provides new evidence for the applications of quantum walk in quantum algorithms and quantum information processing.
我们提出了一种新颖的算法,用于在星型图上进行量子空间搜索,该算法使用交错连续时间量子游走和标记预言机查询。将系统初始化为星型图的中心顶点,我们使用⌈(π/4)√[N] - (1/2)⌉次预言机查询来确定达到与标记状态完全重叠的最优量子游走时间,这与著名的格罗弗搜索下界相匹配。我们在光子量子硬件上对大小为七的数据库实现了确定性搜索,并证明了该方法可有效扩展到大小为115。这是首次在高抗噪声星型图上基于量子游走搜索的实验演示,为量子游走在量子算法和量子信息处理中的应用提供了新证据。