超材料
变换光学
消色差透镜
计算机科学
光学
光子学
物理
各向异性
色散(光学)
带宽(计算)
纳米光子学
宽带
宽带
光子超材料
倍频程(电子)
材料科学
极化(电化学)
偏振模色散
光电子学
电子工程
声学
电信
工程类
物理化学
化学
作者
Yinghui Guo,Yanqin Wang,Mingbo Pu,Zeyu Zhao,Xiaoyu Wu,Xiaoliang Ma,Changtao Wang,Lianshan Yan,Xiangang Luo
摘要
Abstract Dispersion engineering of metamaterials is critical yet not fully released in applications where broadband and multispectral responses are desirable. Here we propose a strategy to circumvent the bandwidth limitation of metamaterials by implementing two-dimensional dispersion engineering in the meta-atoms. Lorentzian resonances are exploited as building blocks in both dimensions of the dedicatedly designed meta-atoms to construct the expected dispersion. We validated this strategy by designing and fabricating an anisotropic metamirror, which can accomplish achromatic polarization transformation in 4-octave bandwidth (two times of previous broadband converters). This work not only paves the way for broadband metamaterials design but also inspire potential applications of dispersion management in nano-photonics.
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