多极展开
波前
光学
叠加原理
电介质
衍射
物理
偶极子
惠更斯-菲涅耳原理
超材料
光电子学
量子力学
作者
Tiesheng Wu,Zhihui Liu,Weiping Cao,Huixian Zhang,Dan Yang,Zuning Yang
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2021-10-11
卷期号:14 (20): 5967-5967
被引量:3
摘要
All-dielectric Huygens' metasurfaces have been widely used in wavefront manipulation through multipole interactions. Huygens' metasurfaces utilize the superposition between an electric dipole and a magnetic dipole resonance to realize transmission enhancement and an accumulated 2π phase change. Benefiting from this unique property, we design and numerically investigate an all-dielectric Huygens' metasurface exhibiting high-efficiency anomalous refraction. To suppress the substrate effect, the metasurface structure is submerged in a dielectric plate. We strategically placed two elements in four short periods to form a unit cell and adjusted the spacing between the two elements to effectively inhibit the interaction between elements. At the operating wavelength of 692 nm, the obtained anomalous transmission efficiency is over 90.7% with a diffraction angle of 30.84°. The performance of the proposed structure is far superior to most of the existing phase-gradient metasurface structures in the visible region, which paves the way for designing efficient beam deflection devices.
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