Focal Lengths Calculation of Metalens at Mid-infrared Wavelength

IF 0.4 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY
Xiaodong Zhang, Xinpeng Wu, Xue Zhu, Guoyong Ye, Liying Jiang
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引用次数: 0

Abstract

The paper proposes polarization insensitive metalens at mid-infrared wavelength (λ = 4 μm), comprising silicon as the emitter and silicon dioxide as the substrate. A 100 μm radius, 302 μm focal length, and 70.72% focal efficiency are achieved for metalens. The difference between the theoretical and simulated focal length is 0.0013%. Multiple metalenses with different radius are designed with the minimum difference between them. These results, including focal length, numerical aperture, focal efficiency, improve the design efficiency for the metalens based on the same structure. The proposed method provides the idea for metalens selection with the minimum difference between focal lengths and the development of an efficient mid-infrared metalens.

中红外波长金属膜的焦距计算
论文提出了中红外波长(λ = 4 μm)的偏振不敏感金属膜,由硅作为发射极,二氧化硅作为衬底。金属膜的半径为 100 μm,焦距为 302 μm,聚焦效率为 70.72%。理论焦距与模拟焦距的差值为 0.0013%。设计了多个不同半径的金属透镜,它们之间的差异最小。这些结果,包括焦距、数值孔径、焦距效率,提高了基于相同结构的金属透镜的设计效率。所提出的方法为选择焦距差最小的金属透镜和开发高效的中红外金属透镜提供了思路。
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来源期刊
Russian Physics Journal
Russian Physics Journal PHYSICS, MULTIDISCIPLINARY-
CiteScore
1.00
自引率
50.00%
发文量
208
审稿时长
3-6 weeks
期刊介绍: Russian Physics Journal covers the broad spectrum of specialized research in applied physics, with emphasis on work with practical applications in solid-state physics, optics, and magnetism. Particularly interesting results are reported in connection with: electroluminescence and crystal phospors; semiconductors; phase transformations in solids; superconductivity; properties of thin films; and magnetomechanical phenomena.
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