Guo Xiangyu, Li Zhen, Chen Haihong, Li Yunlong, Ye Mengyuan, Zhang Xinliang, Yu Yu
Opt Express. 2022 Jul 18;30(15):28049-28056. doi: 10.1364/OE.463043.
Optical phased array (OPA) is a promising beam steering component for light detection and ranging (LiDAR) systems. For most LiDAR applications, two-dimensional (2D, lateral and longitudinal) beam steering with large field of view is required. To achieve large lateral and longitudinal field of view, waveguide with nonuniform spacing and broadband tunable laser source is commonly utilized, resulting in complex structure and high cost. Here, a 2D OPA with large field of view is proposed and demonstrated on the silicon-on-insulator platform. Assisted by an improved optical antenna and polarization switch, lateral and longitudinal steering range could be both significantly improved. The experimental results show the steering ranges are 99.24° × 15.62° and 96.48° × 16.08° for transverse electric mode and transverse magnetic mode, respectively. The proposed scheme provides a promising approach to realize the integrated OPA with large field of view.
光学相控阵(OPA)是一种用于光探测与测距(LiDAR)系统的很有前景的光束转向组件。对于大多数LiDAR应用而言,需要具有大视场的二维(横向和纵向)光束转向。为了实现大的横向和纵向视场,通常采用具有非均匀间距的波导和宽带可调谐激光源,这导致结构复杂且成本高昂。在此,提出并在绝缘体上硅平台上演示了一种具有大视场的二维OPA。在改进的光学天线和偏振开关的辅助下,横向和纵向转向范围都可以得到显著提高。实验结果表明,横向电模式和横向磁模式的转向范围分别为99.24°×15.62°和96.48°×16.08°。所提出的方案为实现具有大视场的集成OPA提供了一种很有前景的方法。