基于传播相位和几何相位协调调制的消色差超构透镜

Q3 Engineering 光电工程 Pub Date : 2020-10-30 DOI:10.12086/OEE.2020.200237
Shen Yijia, Xie Xin, Pu Mingbo, Z. Fei, M. Xiaoliang, Guo Yinghui, Li Xiong, Wang Changtao, Luo Xian-gang
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引用次数: 1

摘要

超透镜被认为是由超表面构成的最有前途的平面光学器件之一,但由于其工作带宽窄、色差大,通常难以实现全彩成像和显示。本文设计了一种相位控制的透射超透镜,实现了400 nm650 nm范围内的宽带消色差聚焦,在带宽范围内焦平面处的平均聚焦效率约为29%。利用低损耗、高折射率的二氧化钛(TiO2)介质纳米柱作为截断波导,可以控制可见光中的传播相位。同时,分析了几何相位与传播相位相融合的色散调制机制,并利用粒子群优化算法对相位响应数据库进行优化,实现了理想波前与实际波前的相位匹配。所提出的宽频带消色差器件可拓宽超构透镜在微成像、计算机视觉和机器视觉等领域的应用。
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Achromatic metalens based on coordinative modulation of propagation phase and geometric phase
Metalens is considered as one of the most promising planar optical devices composed of the metasurface, but it is usually difficult to realize full-color imaging and display due to the narrow working bandwidth and large chromatic aberration. In this paper, a phase-controlled transmissive metalens is designed to realize the broadband achromatic focusing within 400 nm650 nm, and the average focusing efficiency is about 29% at the focal plane within the bandwidth range. The titanium dioxide (TiO2) dielectric nanopillar with low loss and high refractive index as a truncated waveguide can control the propagation phase in the visible. At the same time, we analyze the dispersion modulation mechanism which merges the geometric and propagation phases, and the particle swarm optimization (PSO) algorithm is used to optimize the phase response database, and accomplish the phase matching between the ideal and actual wavefronts. The proposed broadband achromatic devices may broaden the applications of metalens in micro-imaging, computer vision, and machine vision.
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光电工程
光电工程 Engineering-Electrical and Electronic Engineering
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2.00
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6622
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