Numerical study of single-layer and interlayer grating polarizers based on metasurface structures for quantum key distribution systems

A. Q. Baki, S.K. Tawfeeq
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Abstract

Polarization is an important property of light, which refers to the direction of electric field oscillations. Polarization modulation plays an essential role for polarization encoding quantum key distribution (QKD). Polarization is used to encode photons in the QKD systems. In this work, visible-range polarizers with optimal dimensions based on resonance grating waveguides have been numerically designed and investigated using the COMSOL Multiphysics Software. Two structures have been designed, namely a single-layer metasurface grating (SLMG) polarizer and an interlayer metasurface grating (ILMG) polarizer. Both structures have demonstrated high extinction ratios, ~1.8·103 and 8.68·104, and the bandwidths equal to 45 and 55 nm for the SLMG and ILMG, respectively.
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基于元表面结构的单层和层间光栅偏振器在量子密钥分发系统中的数值研究
偏振是光的一个重要特性,指的是电场振荡的方向。偏振调制在偏振编码量子密钥分发(QKD)中起着至关重要的作用。在 QKD 系统中,偏振被用来对光子进行编码。在这项工作中,使用 COMSOL 多物理场软件对基于共振光栅波导的具有最佳尺寸的可见光范围偏振器进行了数值设计和研究。设计了两种结构,即单层元面光栅(SLMG)偏振器和层间元面光栅(ILMG)偏振器。这两种结构都具有很高的消光比,分别为 ~1.8-103 和 8.68-104,SLMG 和 ILMG 的带宽分别为 45 和 55 nm。
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