中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Intensive and Efficient Design of a Two-dimensional 8 x 8 Silicon-Based Optical Phased Array Transceiver

文献类型:期刊论文

作者Y. Y. Zhang, R. Wang, H. B. Liu, G. B. Zhao, M. Wei, R. T. Jiang and K. Y. Du
刊名Sensors
出版日期2023
卷号23期号:23页码:16
DOI10.3390/s23239396
英文摘要In recent years, the silicon-based optical phased array has been widely used in the field of light detection and ranging (LIDAR) due to its great solid-state steering ability. At the same time, the optical phased array transceiver integration scheme provides a feasible solution for low-cost information exchange of small devices in the future. Based on this, this paper designs a two-dimensional optical phased array transceiver with high efficiency and a large field of view, which can realize a dense array with antenna spacing of 5.5 mu m x 5.5 mu m by using low crosstalk waveguide wiring. Additionally, it can realize the conversion between the receiving mode and the transmitting mode by using the optical switch. The simulation results show that the scanning range of 16.3 degrees x 16.3 degrees can be achieved in the transmitting mode, and the overall loss is lower than 10dB. In the receiving mode, we can achieve a collection efficiency of more than 27%, and the antenna array receiving loss is lower than 12.1 dB.
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语种英语
源URL[http://ir.ciomp.ac.cn/handle/181722/68216]  
专题中国科学院长春光学精密机械与物理研究所
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GB/T 7714
Y. Y. Zhang, R. Wang, H. B. Liu, G. B. Zhao, M. Wei, R. T. Jiang and K. Y. Du. Intensive and Efficient Design of a Two-dimensional 8 x 8 Silicon-Based Optical Phased Array Transceiver[J]. Sensors,2023,23(23):16.
APA Y. Y. Zhang, R. Wang, H. B. Liu, G. B. Zhao, M. Wei, R. T. Jiang and K. Y. Du.(2023).Intensive and Efficient Design of a Two-dimensional 8 x 8 Silicon-Based Optical Phased Array Transceiver.Sensors,23(23),16.
MLA Y. Y. Zhang, R. Wang, H. B. Liu, G. B. Zhao, M. Wei, R. T. Jiang and K. Y. Du."Intensive and Efficient Design of a Two-dimensional 8 x 8 Silicon-Based Optical Phased Array Transceiver".Sensors 23.23(2023):16.

入库方式: OAI收割

来源:长春光学精密机械与物理研究所

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