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High-Efficiency Visible Transmitting Polarizations Devices Based on the GaN Metasurface

机译:基于GaN超表面的高效可见光透射偏振器件

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摘要

Metasurfaces are capable of tailoring the amplitude, phase, and polarization of incident light to design various polarization devices. Here, we propose a metasurface based on the novel dielectric material gallium nitride (GaN) to realize high-efficiency modulation for both of the orthogonal linear polarizations simultaneously in the visible range. Both modulated transmitted phases of the orthogonal linear polarizations can almost span the whole 2π range by tailoring geometric sizes of the GaN nanobricks, while maintaining high values of transmission (almost all over 90%). At the wavelength of 530 nm, we designed and realized the beam splitter and the focusing lenses successfully. To further prove that our proposed method is suitable for arbitrary orthogonal linear polarization, we also designed a three-dimensional (3D) metalens that can simultaneously focus the X-, Y-, 45°, and 135° linear polarizations on spatially symmetric positions, which can be applied to the linear polarization measurement. Our work provides a possible method to achieve high-efficiency multifunctional optical devices in visible light by extending the modulating dimensions.
机译:超表面能够调整入射光的幅度,相位和偏振,以设计各种偏振设备。在这里,我们提出了一种基于新型介电材料氮化镓(GaN)的超颖表面,以在可见光范围内同时实现对两个正交线性极化的高效调制。通过调整GaN纳米砖的几何尺寸,正交线性极化的两个调制的透射相位几乎可以跨越整个2π范围,同时保持高透射率(几乎都超过90%)。在530 nm的波长下,我们成功设计并实现了分束器和聚焦透镜。为了进一步证明我们提出的方法适用于任意正交线性极化,我们还设计了一个三维(3D)金属化剂,可以同时将X,Y,45°和135°线性极化聚焦在空间对称位置上,可以应用于线性极化测量。我们的工作提供了一种可能的方法,可通过扩展调制尺寸在可见光下实现高效多功能光学器件。

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