全息术
角动量
多路复用
物理
轨道角动量复用
加密
编码(内存)
解码方法
旋转(数学)
光学
旋转对称性
对称(几何)
平移对称性
旋涡
相(物质)
拓扑(电路)
计算机科学
光学镊子
光的轨道角动量
角位移
计算全息
结构光
全息原理
移相器
光通信
量子纠缠
密码学
几何相位
自旋(空气动力学)
激光器
作者
Xinyue Gao,Zhipeng Yu,Jing Yao,X D Mu,Yuzhi Shi,Puxiang Lai,Bo Li,Qinghua Song
标识
DOI:10.1038/s41467-025-65722-y
摘要
Orbital angular momentum (OAM) multiplexing holography has emerged as a pivotal technology for high-capacity optical communication, encryption and display, but it requires multiple inputs for decoding and its security remain constrained due to the rotational symmetry of topological charge (TC) distribution in conventional OAM modes. Here, we introduce a general paradigm of OAM multiplexing holography that enables multi-channel holographic encoding using a single incident light. Our methodology leverages a discontinuous OAM with a spatially varying TC across the azimuth, which breaks the rotational symmetry and imposes angular selectivity for information retrieval. Notably, by rationally designing the TC distribution, the discontinuous OAM exhibits self-orthogonality at different rotation angles, laying the foundation for multiplexed holography. A modified weighted Gerchberg-Saxton algorithm is developed to calculate the holographic phase profile, which can then be encoded onto a pure geometry-phase metasurface. By further integrating different pairs of discontinuous OAMs, we successfully expand the channel capacity for holographic multiplexing, significantly advancing high-security and high-capacity optical information encryption. Our work establishes discontinuous OAM as a versatile platform for secure optical communications, high-density data storage, and dynamic holographic displays, bridging the gap between structured light manipulation and cryptographic robustness.
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