Zhao Weike, Yi Xiaolin, Huang Jieshan, Liu Ruoran, Wang Jianwei, Shi Yaocheng, Ma Yungui, Forbes Andrew, Dai Daoxin
State Key Laboratory for Extreme Photonics and Instrumentation, College of Optical Science and Engineering, Zhejiang University, Hangzhou, 310058, China.
State Key Laboratory for Mesoscopic Physics, School of Physics, Peking University, Beijing, 100871, China.
Light Sci Appl. 2025 Jun 30;14(1):227. doi: 10.1038/s41377-025-01899-7.
Structured light carrying angular momentum, such as spin angular momentum (SAM) and orbital angular momentum (OAM), has been at the core of new science and applications, driving the need for compact on-chip sources. While many static on-chip solutions have been demonstrated, as well as on-chip sources of free-space modes, no architecture that is fully reconfigurable in all angular momentum states and all on-chip has so far been possible. Here we report the first all-on-chip structured light generator for the creation of both scalar and vectorial angular momentum beams, facilitated through a silicon-on-insulator (SOI) chip with a silica mode multiplexer (silica chip). We selectively stimulate six linearly-polarized (LP) modes of the silica multimode bus waveguide, precisely controlling the modal powers and phases with the SOI chip. This allows us to tailor arbitrary superpositions of the mode set thus synthesizing common cylindrical vector vortex beams as well as OAM beams of controlled spin and topological charge. Our compact structured light generator exhibits high switching speed and operates across the telecom band, paving the way for applications such as optical communication and integrated quantum technologies.
携带角动量的结构化光,如自旋角动量(SAM)和轨道角动量(OAM),一直是新科学和应用的核心,推动了对紧凑型片上光源的需求。虽然已经展示了许多静态片上解决方案以及自由空间模式的片上光源,但到目前为止,还没有一种架构能够在所有角动量状态下完全可重构且全片上实现。在此,我们报告了首个全片上结构化光发生器,用于产生标量和矢量角动量光束,这是通过带有二氧化硅模式复用器的绝缘体上硅(SOI)芯片(二氧化硅芯片)实现的。我们选择性地激发二氧化硅多模总线波导的六种线性偏振(LP)模式,利用SOI芯片精确控制模式功率和相位。这使我们能够定制模式集的任意叠加,从而合成常见的圆柱矢量涡旋光束以及具有可控自旋和拓扑电荷的OAM光束。我们的紧凑型结构化光发生器具有高开关速度,并且在整个电信频段运行,为光通信和集成量子技术等应用铺平了道路。