Author Affiliations
Abstract
1 Shandong Inspur Artificial Intelligence Research Institute Company Limited, Jinan 250013, China
2 MIIT Key Laboratory of Photonics Information Technology, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China
Active metasurfaces have recently attracted more attention since they can make the light manipulation be versatile and real-time. Metasurfaces-based holography possesses the advantages of high spatial resolution and enormous information capacity for applications in optical displays and encryption. In this work, a tunable polarization multiplexing holographic metasurface controlled by an external magnetic field is proposed. The elaborately designed nanoantennas are arranged on the magneto-optical intermediate layer, which is placed on the metallic reflecting layer. Since the non-diagonal elements of the dielectric tensor of the magneto-optical material become non-zero values once the external magnetic field is applied, the differential absorption for the left and right circularly polarized light can be generated. Meanwhile, the amplitude and phase can be flexibly modulated by changing the sizes of the nanoantennas. Based on this, the dynamic multichannel holographic display of metasurface in the linear and circular polarization channels is realized via magnetic control, and it can provide enhanced security for optical information storage. This work paves the way for the realization of magnetically controllable phase modulation, which is promising in dynamic wavefront control and optical information encryption.
active metasurface magneto-optical effect polarization multiplexing holography dynamic holographic display 
Chinese Optics Letters
2024, 22(4): 043601
李彦锦 1周朗 1李卓 1施蕊 1[ ... ]杨苏辉 1,2,*
作者单位
摘要
1 北京理工大学光电学院, 北京 100081
2 精密光电测试仪器及技术北京市重点实验室, 北京 100081
超快成像技术可用于研究爆炸、高压放电等超快现象,其中,全光分幅成像技术可克服光电转换的时间限制,具有很大的发展前景。利用衍射光学元件和窄带滤波片搭建了全光空间分幅成像系统,成功实现阵列分幅成像,并分析了不同波段的成像效果。实验结果表明,所设计的全光空间分幅成像系统,可在不同波段内实现4×4阵列的16分幅成像;且图像幅间的非均匀性相对标准偏差为7.4%,幅内非均匀性均值为2.83%,全光分幅成像系统在分辨率为35 lp/mm时的调制传递函数为0.991。
超快光学 分幅成像 二维成像 衍射光学元件 
光学学报
2021, 41(2): 0232001
作者单位
摘要
北京理工大学 光电学院 目标仿真实验室 精密光电测试仪器与技术北京市重点实验室,  北京 100081
MEMS红外图像转换芯片是一种将可见光转换为红外辐射并用于红外目标模拟器的直接辐射型器件。对MEMS红外图像转换芯片的热力学性能进行研究: 与标准黑体辐射谱对比表明芯片辐射光谱为黑体谱, 红外波段平均发射率0.638; 通过线扩散函数研究芯片横向热传导特性, 其热扩散距离随衬底厚度降低而减小, 在衬底上制作周期性像元阵列可以有效降低其热传导系数, 衬底厚度360nm的刻有像元的转换芯片热传导系数为0.1W/m·K ; 转换芯片的时间特性研究表明其时间常数随衬底厚度减小而变小, 衬底厚度345nm的芯片制冷至5℃时的时间常数为2.72ms。
红外场景生成 MEMS红外转换芯片 热力学性能 辐射光谱 热传导 时间常数 infrared scene generation the MEMS infrared transducer thermodynamic properties radiation spectrum thermal conductivity time constant 
光学技术
2019, 45(4): 502

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