物理
角动量
光学
光束
光学镊子
编码(内存)
坡印亭病媒
光通信
空格(标点符号)
分束器
梁(结构)
集合(抽象数据类型)
横截面
光的轨道角动量
拓扑(电路)
结构光
旋涡
自由空间光通信
构造(python库)
计算机科学
几何光学
混合(物理)
光子
光学力
波前
角位移
激光束
光的角动量
作者
Xiaoyan Zhou,John You En Chan,Chia-Te Chang,Zhen-Chao Liu,Hao Wang,Andrew Forbes,Cheng‐Wei Qiu,Hongtao Wang,Joel K. W. Yang
标识
DOI:10.1038/s41467-026-73443-z
摘要
Light beams carrying orbital angular momentum (OAM) possess an unbounded set of orthogonal modes, offering significant potential for optical communication and security. However, exploiting OAM beams in space has been hindered by the lack of a versatile design toolkit. Here, we demonstrate a strategy to tailor OAM across multiple transverse planes by shaping optical caustics leveraging on catastrophe theory. With 3D-printed metasurfaces fabricated using two-photon polymerization lithography, we construct these caustics to steer Poynting vectors and achieve arbitrary shapes of OAM beams. Interestingly, we further realize "hidden" OAM along the propagation trajectory, where the intensity of the beam is spread out thus avoiding detection. By exploiting this intrinsic nature of OAM, we demonstrate the detection of encoded information in optical encryption. Our approach provides a unique framework for dynamic control of OAM in space, with promising applications in optical trapping and sensing, high-capacity data storage, and optical information security.
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