物理
相干控制
角动量
光学
相(物质)
各向同性
信号(编程语言)
梁(结构)
超短脉冲
旋涡
光束
相对相位
波前
高斯光束
涡流
相变
相位调制
高斯分布
动量(技术分析)
光学镊子
相位控制
控制(管理)
激光器
同步(交流)
跟踪(教育)
扭矩
控制系统
旋转(数学)
光学力
激光束
光开关
作者
Hongwei Yang,Kai Tu,Zhuguang Chen,Yao Hong,Jie Tang,Huadan Zheng,Yongchun Zhong,Jinghua Yu,Zhe Chen,Wenguo Zhu
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-04-10
卷期号:12 (15): eaec4604-eaec4604
标识
DOI:10.1126/sciadv.aec4604
摘要
Optical spin-orbit interactions (SOI) are an intriguing physical phenomenon where the spin (circular polarization) of light influences and governs its spatial degrees of freedom. Yet, achieving real-time and flexible control over SOI remains a formidable challenge. Here, we propose a coherent control method for the flexible manipulation of optical SOI using a thin isotropic crystal. The output horizontally and vertically polarized waves from the crystal exhibit strong and distinct dependencies on the phase delay between the input signal and control waves, leading to substantial spin-orbit beam shifts. By tuning the relative phase between the signal beam and the control beam, we observe transitions from Gaussian to first-order orbital angular momentum (OAM) vortex modes. The achievable transition speed reaches 11.5 gigahertz, now limited by the external electro-optic link in the control arm. Notably, the dual-port architecture offers coherent and reversible selection of spin-OAM states, with the output port uniquely determined by the phase delay between two counter-propagating input beams. This ultrafast coherent control method opens avenues for advanced manipulation of SOI.
科研通智能强力驱动
Strongly Powered by AbleSci AI