材料科学
光学
功率(物理)
光电子学
栅栏
光束转向
传输(电信)
梁(结构)
硅光子学
模块化设计
光圈(计算机存储器)
光通信
光子学
测距
相控阵
信号(编程语言)
波导管
光学(聚焦)
电子工程
计算机科学
光功率
天线孔径
相控阵光学
真延时
衍射光栅
光开关
波束赋形
光束发散
制作
旁瓣
功率分配器和定向耦合器
信号处理
主瓣
还原(数学)
光学滤波器
作者
Xin Yan,Feng Li,Han Wang,Xia Feng,Weimin Xie,Yunchao Li,Xu Yang,Kai Jin,Xiqi Li,Xuejun Zhang,Mingwei Tang,K. Q. Wei
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2026-01-08
卷期号:13 (2): 373-384
被引量:1
标识
DOI:10.1021/acsphotonics.5c01389
摘要
Optical phased arrays (OPAs) have become essential components in light detection and ranging (LiDAR) systems and free-space optical communication (FSO), where OPAs with optimized power output and aperture size are crucial for enhancing the detection range and improving signal transmission reliability. While current methods focus on utilizing high-power-tolerant waveguide materials (e.g., SiN) to boost OPA output power and increasing the number of grating antennas to enlarge the output aperture, several factors─such as on-chip tree-like beam-splitting structures, on-chip losses, and the limitations of the effective photolithographic area─restrict the achievable output power and aperture size. We demonstrate the coherent beam synthesis of multiple OPAs using off-chip phase-locked loop compensation, which results in a 319% enhancement in peak power in the far-field main lobe while achieving a 62% reduction in fwhm of the main lobe compared to that of a single OPA. Moreover, our method enables precise beam steering without the need for tedious recalibration. The demonstrated technique shows excellent scalability for modular expansion, offering a promising framework for next-generation OPA applications in long-range sensing and reliable optical communication systems.
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