拓扑(电路)
量子纠缠
物理
光子学
量子
量子力学
量子网络
量子计量学
拓扑简并
对称保护拓扑序
量子技术
量子信息
纳米量子科学
叠加原理
光子
光子晶体
量子光学
拓扑绝缘体
物理中的拓扑熵
拓扑量子数
量子传感器
光子纠缠
W州
量子态
量子不和谐
量子计算机
拓扑序
非线性系统
作者
M. Javad Zakeri,Armando Pérez-Leija,Andrea Blanco-Redondo
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-03-26
卷期号:391 (6792): 1379-1382
标识
DOI:10.1126/science.aec1344
摘要
The generation and manipulation of high-dimensional quantum states lies at the heart of modern quantum computation. The use of topology to resiliently encode and transport quantum information has been widely investigated in condensed matter and has recently penetrated quantum photonics. However, a route to scale up to a large number of entangled topological photonic modes has been missing. In this work, we demonstrate a method to generate high-dimensional topological photonic entanglement. Our platform relies on designed silicon photonic waveguide topological superlattices, which support nonlinear generation of energy-time-entangled photon pairs on a superposition of multiple topological modes. We show strong signatures of entanglement of up to five topological modes with resilience to nanofabrication imperfections, providing a route toward scalable, fault-tolerant quantum photonic states.
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