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作 者:Ximin Tian Yafeng Huang Junwei Xu Tao Jiang Pei Ding Yaning Xu Shenglan Zhang Zhi-Yuan Li
机构地区:[1]Zhengzhou University of Aeronautics,School of Materials Science and Engineering,Zhengzhou,China [2]Nanjing University,College of Engineering and Applied Sciences,National Laboratory of Solid State Microstructures,Nanjing,China [3]South China University of Technology,College of Physics and Optoelectronics,Guangzhou,China
出 处:《Advanced Photonics Nexus》2023年第5期44-55,共12页先进光子学通讯(英文)
基 金:supported by the National Natural Science Foundation of China(Grant No.12004347);the Scientific and Technological Project in Henan Province(Grant Nos.222102210063 and 232102320057);the Aeronautical Science Foundation of China(Grant Nos.2020Z073055002 and 2019ZF055002);the Innovation and Entrepreneurship Training Program for College Students(Grant Nos.202210485007 and 202210485044);the Graduate Education Innovation Program Foundation(Grant No.2022CX53).
摘 要:Metasurfaces have emerged as a flexible platform for shaping the electromagnetic field via the tailoring phase,amplitude,and polarization at will.However,the chromatic aberration inherited from building blocks’diffractive nature plagues them when used in many practical applications.Current solutions for eliminating chromatic aberration usually rely on searching through many meta-atoms to seek designs that satisfy both phase and phase dispersion preconditions,inevitably leading to intensive design efforts.Moreover,most schemes are commonly valid for incidence with a specific spin state.Here,inspired by the Rayleigh criterion for spot resolution,we present a design principle for broadband achromatic and polarization-insensitive metalenses using two sets of anisotropic nanofins based on phase change material Ge2Sb2Se4Te1.By limiting the rotation angles of all nanofins to either 0 deg or 90 deg,the metalens with a suitable numerical aperture constructed by this fashion allows for achromatic and polarization-insensitive performance across the wavelength range of 4–5μm,while maintaining high focusing efficiency and diffraction-limited performance.We also demonstrate the versatility of our approach by successfully implementing the generation of broadband achromatic and polarization-insensitive focusing optical vortex.This work represents a major advance in achromatic metalenses and may find more applications in compact and chip-scale devices.
关 键 词:metasurfaces broadband achromatic metalenses polarization insensitivity phase change materials of Ge2Sb2Se4Te1
分 类 号:O57[理学—粒子物理与原子核物理]
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