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Generalized Brewster effect in dielectric metasurfaces

机译:介电超表面中的广义布鲁斯特效应

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摘要

Polarization is a key property defining the state of light. It was discovered by Brewster, while studying light reflected from materials at different angles. This led to the first polarizers, based on Brewster's effect. Now, one of the trends in photonics is the study of miniaturized devices exhibiting similar, or improved, functionalities compared with bulk optical elements. In this work, it is theoretically predicted that a properly designed all-dielectric metasurface exhibits a generalized Brewster's effect potentially for any angle, wavelength and polarization of choice. The effect is experimentally demonstrated for an array of silicon nanodisks at visible wavelengths. The underlying physics is related to the suppressed scattering at certain angles due to the interference between the electric and magnetic dipole resonances excited in the nanoparticles. These findings open doors for Brewster phenomenon to new applications in photonics, which are not bonded to a specific polarization or angle of incidence.
机译:偏振是定义光状态的关键属性。它是布鲁斯特(Brewster)在研究材料不同角度反射的光时发现的。这导致了第一批基于布鲁斯特效应的偏振器。现在,光子学的趋势之一是研究与体光学元件相比具有相似或改进功能的小型化设备。在这项工作中,从理论上预测,适当设计的全电介质超颖表面可能会在所选的任何角度,波长和极化条件下均表现出广义布鲁斯特效应。实验证明了在可见波长的硅纳米盘阵列的效果。由于在纳米粒子中激发的电和磁偶极子共振之间的干扰,基本的物理学与在某些角度的抑制散射有关。这些发现为布鲁斯特现象为光子学的新应用打开了大门,光子学没有与特定的偏振或入射角结合。

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