量子纠缠
干涉测量
干扰(通信)
量子退相干
物理
量子
量子网络
多径干扰
缩放比例
天文干涉仪
量子力学
拓扑(电路)
计算机科学
多径传播
数学
电信
频道(广播)
几何学
组合数学
作者
Kerolos M. A. Yousef,Marco D’Alessandro,Matthew Yeh,Neil Sinclair,Marko Lončar,Federico Capasso
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-07-24
卷期号:389 (6758): 416-422
标识
DOI:10.1126/science.adw8404
摘要
Multiphoton interference and entanglement are fundamental to quantum information science, yet extending these effects to higher-dimensional systems remains challenging given the imperfections and complexity of scaling conventional linear-optical setups. We present a generalized Hong-Ou-Mandel effect using metasurfaces and graph theory, achieving controlled multiphoton bunching, antibunching, and entanglement across parallel Jones matrix–encoded spatial modes—all within a single-layer metasurface. A graph-theoretic dual framework is introduced that simultaneously encodes the metasurface-based multiport interferometer designs and its resulting nonclassical correlations, enabling the direct translation of linear quantum optical networks into a single-layer metasurface. We also demonstrate the ability of metasurfaces to produce multipath-entangled states and perform transformations equivalent to higher-order Hadamard interferometers. Our results underscore metasurface quantum graphs for scalable, low-decoherence quantum information infrastructure.
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