全息术
极化(电化学)
加密
物理
涡流
光学
多路复用
结构光
圆极化
角动量
旋涡
光束
轨道角动量复用
正交偏振光谱成像
空间光调制器
光通信
计算全息
计算机科学
线极化
拓扑(电路)
光场
镜头(地质)
波前
相位调制
全息显示器
径向极化
物理光学
作者
Rui Liu,Yan Li,Yuefei Liu,Zhenwei Xie
标识
DOI:10.1002/lpor.202501944
摘要
Abstract To expand the vortex beam manipulation dimensions and improve orbital angular momentum (OAM) holographic encryption security, a novel vortex structured light field featuring space‐variant polarization is presented. The space‐variant polarization beam unite the modulation of the phase, amplitude, and polarization of vortex beams. While enabling arbitrary amplitude modulation and beam shaping for vortex light fields, it also achieves arbitrary customization of the local polarization states within the vortex beam. More importantly, leveraging the multi‐dimensional cooperative control characteristics of structured light fields, an OAM holographic encryption system with polarization‐switching capabilities is developed. By dynamically switching the polarization states of space‐variant polarized structured light, the polarization channels of the holographic encryption system can be altered, ultimately enabling controllable reconstruction of image information. Experimental results demonstrate that this work extends the traditional vortex light field control dimensions to triple physical dimension (amplitude, polarization, and topological phase) and also establishes a polarized OAM multiplexing encryption channel. The system supports dynamic polarization reconstruction of images, significantly enhancing security and channel capacity.
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