Broadband high-efficiency dielectric metalenses based on quasi-continuous nanostrips

被引:0
作者
Xiaohu Zhang [1 ]
Qinmiao Chen [2 ]
Dongliang Tang [3 ]
Kaifeng Liu [1 ]
Haimo Zhang [1 ]
Lintong Shi [1 ]
Mengyao He [1 ]
Yongcai Guo [1 ]
Shumin Xiao [2 ]
机构
[1] Key Laboratory of optoelectronic Technology and Systems of the Education Ministry of China,Chongqing University
[2] Ministry of Industry and Information Technology Key Lab of Micro-Nano Optoelectronic Information System,Guangdong Provincial Key Laboratory of Semiconductor Optoelectronic Materials and Intelligent Photonic Systems,Harbin Institute of Technology
[3] Key Laboratory for Micro/Nano Optoelectronic Devices of Ministry of Education & Hunan Provincial Key Laboratory of Low-Dimensional Structural Physics and Devices,School of Physics and Electronics,Hunan
关键词
D O I
暂无
中图分类号
TH74 [光学仪器]; O43 [光学];
学科分类号
0803 ; 070207 ;
摘要
Benefiting from the abrupt phase changes within subwavelength thicknesses,metasurfaces have been widely applied for lightweight and compact optical systems.Simultaneous broadband and high-efficiency characteristics are highly attractive for the practical implementation of metasurfaces.However,current metasurface devices mostly adopt discrete micro/nano structures,which rarely realize both merits simultaneously.In this paper,dielectric metasurfaces composed of quasi-continuous nanostrips are proposed to overcome this limitation.Via quasi-continuous nanostrips metasurface,a normal focusing metalens and a superoscillatory lens overcoming the diffraction limit are designed and experimentally demonstrated.The quasi-continuous metadevices can operate in a broadband wavelength ranging from 450 nm to 1000nm and keep a high power efficiency.The average efficiency of the fabricated metalens reaches 54.24%,showing a significant improvement compared to the previously reported metalenses with the same thickness.The proposed methodology can be easily extended to design other metadevices with the advantages of broadband and high-efficiency in practical optical systems.
引用
收藏
页码:49 / 58
页数:10
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