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Wide-steering-angle high-resolution optical phased array

delete2021-12-01
delete108
PRE
AI
Y
Yingzhi Li
B
Baisong Chen
Q
Quanxin Na
Q
Qijie Xie
陶敏 cover
陶敏 (Min Tao)
L
Lanxuan Zhang
Z
Zihao Zhi
Y
Yuxuan Li
刘晓斌 cover
刘晓斌 (Xiaobin Liu)
X
Xianshu Luo
G
Guo‐Qiang Lo
高凤丽 cover
高凤丽 (Fengli Gao)
X
Xueyan Li
宋俊峰 cover
宋俊峰 (Junfeng Song) *
DOI:10.1364/PRJ.437846delete
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Abstract

Abstract

En 中文
Optical phased array (OPA) technology is considered a promising solution for solid-state beam steering to supersede the traditional mechanical beam steering. As a key component of the LIDAR system for long-range detection, OPAs featuring a wide steering angle and high resolution without beam aliasing are highly desired. However, a wide steering range requires a waveguide pitch less than half of the wavelength, which is easily subjected to cross talk. Besides, high resolution requires a large aperture, and it is normally achieved by a high count number of waveguides, which complicates the control system. To solve the mentioned issues, we design two high-performance 128-channel OPAs fabricated on a multilayered SiN-on-SOI platform. Attributed to the nonuniform antenna pitch, only 128 waveguides are used to achieve a 4 mm wide aperture. Besides, by virtue of innovative dual-level silicon nitride (Si3N4) waveguide grating antennas, the fishbone antenna OPA achieves a 100 degrees x 19.4 degrees field of view (FOV) with divergence of 0.021 degrees x 0.029 degrees, and the chain antenna OPA realizes a 140 degrees x 19.23 degrees FOV with divergence of 0.021 degrees x 0.1 degrees. To our best knowledge, 140 degrees is the widest lateral steering range in two-dimensional OPA, and 0.029 degrees is the smallest longitudinal divergence. Finally, we embed the OPA into a frequency-modulated continuous-wave system to achieve 100 m distance measurement. The reflected signal from 100 m distance is well detected with 26 dBm input transmitter power, which proves that OPA serves as a promising candidate for transceiving optical signal in a LIDAR system. (C) 2021 Chinese Laser Press
Keywords:
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Journal

Photonics Research cover
Photonics Research
IF:
7.2
Papers:
2.4K
Citations:
1.3W

Organization

P
Peng Cheng Laboratory
Scholars:
1.7K
Papers: 1.7K
Citations: 2.0K
J
Jilin University
Scholars:
8.6W
Papers: 5.5W
Citations: 8.9K