物理
旋涡
解耦(概率)
角动量
光学
扭转
电介质
梁(结构)
光束
涡流
光通信
光学物理学
限制
量子
量子信息
动量(技术分析)
光学力
光电子学
光学镊子
光盘
稳健性(进化)
光纤
量子点
平版印刷术
可扩展性
光学工程
干涉测量
旋转(数学)
干扰(通信)
量子信息处理
光子学
弗洛奎特理论
抵抗
电子束光刻
作者
Tian Xia,Zhenwei Xie,Qiang Zhang,Wenchun Xiao,Hui Yang,Yueqiang Hu,Huigao Duan,Yangjian Cai,Xiaocong Yuan,Tian Xia,Zhenwei Xie,Qiang Zhang,Wenchun Xiao,Hui Yang,Yueqiang Hu,Huigao Duan,Yangjian Cai,Xiaocong Yuan
标识
DOI:10.1038/s41467-025-66609-8
摘要
Optical vortices, beams that carry a twist, are pivotal in advanced technologies like optical manipulation, optical communications and imaging. However, their utility has been hampered by a fundamental limitation: the size and spread of the beam change inevitably with its twist and color, making stable, scalable systems difficult to achieve. Here we show that using precisely engineered metasurfaces to control light's radial momentum enables the generation of a class of 'achromatic non-diffracting perfect vortex beams' (ANPVBs). These beams maintain an almost perfectly constant diameter, regardless of their twist or color across the visible spectrum (450-780 nm), and resist spreading over long distances. By decoupling beam size from these previously limiting factors, our work provides a robust and versatile platform for applications in high-capacity optical communication, quantum information processing and imaging.
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