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《科学》 第391卷 第6792期 · 2026年3月26日 · 中文解读

高维拓扑光子纠缠

High-dimensional topological photonic entanglement · M. J. Zakeri et al.
约 32 分钟Research Article在小程序里点播,20 到 60 分钟做好
这篇讲什么
本文展示了一种在硅光子拓扑超晶格中生成高维拓扑光子纠缠的方法,并验证了其对纳米制造缺陷的鲁棒性。
原文开头
M. Javad Zakeri1, Armando Perez-Leija2, Andrea Blanco-Redondo1* 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. …
摘自《科学》(Science)第391卷 第6792期 · 2026年3月26日,M. J. Zakeri et al.。仅引用开头一小段供了解文章,版权归原刊所有,全文请阅读原刊。
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