极化(电化学)
光学
消光比
透射率
像素
材料科学
光电子学
物理
波长
物理化学
化学
作者
Lifeng Ma,Shan Du,Jun Chang,Weilin Chen,Chuhan Wu,Xinxin Shi,Yi Huang,Yue Zhong,Quanquan Mu
出处
期刊:Chinese Physics B
[IOP Publishing]
日期:2022-12-09
卷期号:32 (8): 084201-084201
被引量:2
标识
DOI:10.1088/1674-1056/acaa25
摘要
Real-time polarization medium-wave infrared (MIR) optical imaging systems enable the acquisition of infrared and polarization information for a target. At present, real-time polarization MIR devices face the following problems: poor real-time performance, low transmission and high requirements for fabrication and integration. Herein, we aim to improve the performance of real-time polarization imaging systems in the MIR waveband and solve the above-mentioned defects. Therefore, we propose a MIR polarization imaging system to achieve real-time polarization-modulated imaging with high transmission as well as improved performance based on a pixel-wise metasurface micro-polarization array (PMMPA). The PMMPA element comprises several linear polarization (LP) filters with different polarization angles. The optimization results demonstrate that the transmittance of the center field of view for the LP filters is up to 77% at a wavelength of 4.0 μm and an extinction ratio of 88 dB. In addition, a near-diffraction-limited real-time MIR imaging optical system is designed with a field of view of 5° and an F -number of 2. The simulation results show that an MIR polarization imaging system with excellent real-time performance and high transmission is achieved by using the optimized PMMPA element. Therefore, the method is compatible with the available optical system design technologies and provides a way to realize real-time polarization imaging in MIR wavebands.
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