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内蒙古自治区呼和浩特市赛罕区大学西街235号 邮编: 010021
作者机构:Shanghai Frontiers Science Research Base of Intelligent Optoelectronic and Perception Institute of Optoelectronic Fudan University Shanghai200433 China College of Physics and Optoelectronic Engineering Hangzhou Institute for Advanced Study University of Chinese Academy of Sciences No.1 Sub-Lane Xiangshan Xihu District Hangzhou310024 China State Key Laboratory of Infrared Physics Shanghai Institute of Technical Physics Chinese Academy of Sciences 500 Yu Tian Road Shanghai200083 China State Key Laboratory of Integrated Chips and Systems Frontier Institute of Chip and System Fudan University Shanghai200433 China
出 版 物:《SSRN》
年 卷 期:2024年
核心收录:
摘 要:Compared with traditional imaging methods, polarization imaging technology has unique advantages and tremendous development prospects in areas such as medical diagnostics, underwater detection, camouflage identification, and sponge oil leak detection. Therefore, polarization imaging technology has become a current focus of the field of photoelectron technology. This paper introduces the principles, the current structures, and development trends of various polarization imaging systems. Non-simultaneous polarization imaging is primarily achieved through two methods: rotary polarization imaging and liquid crystal modulated polarization imaging. Simultaneous polarization imaging, on the other hand, is mainly implemented through three methods: divided amplitude polarization imaging, divided aperture polarization imaging, and divided focal plane polarization imaging. We summarized some polarization image processing methods and specific applications, aiming to drive the research, application, and development of polarization imaging technology. © 2024, The Authors. All rights reserved.