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片上红外偏振探测研究进展

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偏振是光的固有自由度,偏振探测提供了光强和波长之外的更多丰富信息.红外偏振探测器在成像、通信、遥感和宇宙学等众多应用中发挥着至关重要的作用.然而,传统的偏振检测系统体积庞大、系统复杂,阻碍了偏振探测的小型化和集成化.近来,片上红外偏振探测器的发展引起了广泛的研究兴趣.本文将重点介绍片上红外偏振探测器的两个前沿研究领域:偏振敏感材料和偏振选择性光耦合结构集成的红外偏振探测器,主要讨论片上红外偏振探测器的研究现状以及未来的挑战和机遇.
Recent advances in on-chip infrared polarization detection
Polarization is an intrinsic degree of freedom of light.The detection of polarization light provides more information in addition to light intensity and wavelength.Infrared polarization detectors play a vital role in numer-ous applications,such as imaging,communication,remote sensing,and cosmology.However,traditional polar-ization detection systems are bulky and complex,hindering the miniaturization and integration of polarization de-tection.Recently,the development of on-chip infrared polarization detectors has become an area of great interest.In this review,we focus on two recent advanced research areas of on-chip infrared polarization detectors:polariza-tion-sensitive materials and integration of polarization-selective optical coupling structures.We discuss the current research status,future challenges and opportunities for the development of on-chip infrared polarization detectors.

infrared polarization detectoranisotropic materialstopological materialschiral perovskitespolarization-selective optical coupling structures

甄玉冉、邓杰、布勇浩、代旭、余宇、石梦碟、王若文、叶韬、陈刚、周靖

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中国科学院上海技术物理研究所 红外物理国家重点实验室,上海 200083

中国科学院大学,北京 100049

红外偏振探测器 各向异性材料 拓扑材料 手性钙钛矿 偏振选择性光学耦合结构

国家重点研发计划中国科学院战略规划重点项目国家自然科学基金国家自然科学基金国家自然科学基金国家自然科学基金Key Deployment Projects of the Chinese Academy of SciencesProgram of Shanghai Academic Technology Research Leader上海市科技计划重大项目上海市自然科学基金

2022YFA1404602XDB058000061975223619914426230536262075230ZDRW-XH-2021-7-122XD14244002019SHZDZX0119ZR1465400

2024

红外与毫米波学报
中国光学学会 中国科学院上海技术物理所

红外与毫米波学报

CSTPCD北大核心
影响因子:0.612
ISSN:1001-9014
年,卷(期):2024.43(1)
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