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作 者:王绍军 张郑合 侯紫玥 翟一恒 徐超捷 李孝峰 Wang Shaojun;Zhang Zhenghe;Hou Ziyue;Zhai Yiheng;Xu Chaojie;Li Xiaofeng(School of Optoelectronic Science and Engineering&Collaborative Innovation Center of Suzhou Nano Science and Technology,Soochow University,Suzhou 215006,Jiangsu,China;Key Lab of Advanced Optical Manufacturing Technologies of Jiangsu Province&Key Lab of Modern Optical Technologies of Education Ministry of China,Suzhou 215006,Jiangsu,China;Physics Department,Harbin Institute of Technology,Harbin 150001,Heilongjiang,China;Institute of Functional Nano&Soft Materials(FUNSOM),Soochow University,Suzhou 215123,Jiangsu,China)
机构地区:[1]苏州大学光电科学与工程学院&苏州纳米科技协同创新中心,江苏苏州215006 [2]江苏省先进光学制造技术重点实验室&教育部现代光学技术重点实验室,江苏苏州215006 [3]哈尔滨工业大学物理学院,黑龙江哈尔滨150001 [4]苏州大学功能纳米与软物质研究院,江苏苏州215123
出 处:《激光与光电子学进展》2024年第3期213-232,共20页Laser & Optoelectronics Progress
基 金:国家自然科学基金(62275184,62120106001);江苏省自然科学基金(BK20200859);江苏省高校优势学科建设工程项目。
摘 要:人工构建的平面化超构表面由于其独特的电磁响应以及超薄、易集成的优势,在光子学和新型光电子技术方面发挥着至关重要的作用。基于近场共振模式的发光超构表面在散射辐射光子、定向和增强光子态密度等方面展现出独特优势,拓展了其在前沿光子学领域的应用。本文概述了超构表面调控系综量子光源辐射行为的基本原理,详细介绍了可见光波段内发光超构表面最新的研究应用进展,包括微小型固态照明、虚拟现实和增强现实高清显示、可见光通信、高能X射线探测、手性光源以及低阈值微纳激光器等领域的应用。最后展望了发光超构表面的未来发展方向。Artificially constructed planar metasurfaces play a crucial role in photonics and emerging optoelectronic technologies due to their unique electromagnetic characteristics,ultrathin profiles,and seamless integration capabilities.Light-emitting metasurfaces based on near-field resonance modes exhibit unique advantages in scattering radiative photons,directing and enhancing light emission,expanding their applications in advanced photonics.This review provides an insightful overview of the basic principles of manipulating and controlling the emission behavior of ensembled quantum emitters,and provides a detailed introduction to the latest research and application progress of lightemitting metasurfaces within the visible light spectrum,including applications in fields such as miniature solid-state lighting devices,virtual reality and augmented reality high-definition displays,visible light communication,high-energy X-ray detection,chiral light-sources,and low threshold micro/nano lasers,etc.Finally,future development directions of light-emitting metasurfaces are prospected.
关 键 词:光学器件 微纳光子器件 发光超构表面 定向辐射平面光源
分 类 号:TN29[电子电信—物理电子学]
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