光子学
物理
量子
拓扑(电路)
量子纠缠
光子晶体
光子
量子光学
量子技术
光电子学
量子力学
开放量子系统
数学
组合数学
作者
Yang Chen,Xin‐Tao He,Yujie Cheng,Hao-Yang Qiu,Lan‐Tian Feng,Ming Zhang,Daoxin Dai,Guang‐Can Guo,Jian‐Wen Dong,Xi‐Feng Ren
标识
DOI:10.1103/physrevlett.126.230503
摘要
Topological photonics has been introduced as a powerful platform for integrated optics, since it can deal with robust light transport, and be further extended to the quantum world. Strikingly, valley-contrasting physics in topological photonic structures contributes to valley-related edge states, their unidirectional coupling, and even valley-dependent wave division in topological junctions. Here, we design and fabricate nanophotonic topological harpoon-shaped beam splitters (HSBSs) based on 120-deg-bending interfaces and demonstrate the first on-chip valley-dependent quantum information process. Two-photon quantum interference, namely, Hong-Ou-Mandel interference with a high visibility of 0.956±0.006, is realized with our 50/50 HSBS, which is constructed by two topologically distinct domain walls. Cascading this kind of HSBS together, we also demonstrate a simple quantum photonic circuit and generation of a path-entangled state. Our work shows that the photonic valley state can be used in quantum information processing, and it is possible to realize more complex quantum circuits with valley-dependent photonic topological insulators, which provides a novel method for on-chip quantum information processing.
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