Kim Nayoung, Kim Myungjoon, Jung Joonkyo, Chang Taeyong, Jeon Suwan, Shin Jonghwa
Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.
Nanophotonics. 2023 Feb 13;12(13):2347-2358. doi: 10.1515/nanoph-2022-0793. eCollection 2023 Jun.
Optical metasurfaces have great potential to overcome the functional limitations of conventional optical devices. In addition to polarization- or wavelength-multiplexed metasurfaces, angle-multiplexed metasurfaces can provide new degrees of freedom, enabling previously unrealized complex functionality in diverse applications such as LiDAR, augmented reality glasses, and imaging. However, there have been fundamental trade-offs in transmission efficiency and angular sensitivity for practically important paraxial rays. In this paper, we overcome this limitation by breaking mirror symmetries of single-layer metasurface structures. Based on an effective medium theory, we intuitively explain which material parameters affect the sensitivity and efficiency and prove that high sensitivity and high efficiency can be achieved simultaneously by breaking the mirror symmetry. Based on this, we propose optimized metasurfaces for two applications: an angle-multiplexed beam-steering device with up to 93% relative efficiency and an angle-multiplexed metalens array that can break the fundamental resolution-density trade-off of microlens arrays with high efficiency. The proposed angle-selective designs could pave the way for the development of new classes of compact optical devices with novel functions.
光学超表面在克服传统光学器件的功能限制方面具有巨大潜力。除了偏振或波长复用超表面外,角度复用超表面还能提供新的自由度,从而在诸如激光雷达、增强现实眼镜和成像等各种应用中实现前所未有的复杂功能。然而,对于实际中重要的傍轴光线,在传输效率和角度灵敏度之间一直存在着基本的权衡。在本文中,我们通过打破单层超表面结构的镜面对称性来克服这一限制。基于有效介质理论,我们直观地解释了哪些材料参数会影响灵敏度和效率,并证明通过打破镜面对称性可以同时实现高灵敏度和高效率。基于此,我们针对两种应用提出了优化的超表面:一种相对效率高达93%的角度复用光束转向装置,以及一种能够高效打破微透镜阵列基本分辨率 - 密度权衡的角度复用超透镜阵列。所提出的角度选择性设计可为开发具有新颖功能的新型紧凑型光学器件铺平道路。