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由全介质椭圆超材料和各向同性介质组成的一维混合光子晶体中的偏振敏感光子带隙。

Polarization-sensitive photonic bandgaps in hybrid one-dimensional photonic crystals composed of all-dielectric elliptical metamaterials and isotropic dielectrics.

出版信息

Appl Opt. 2023 Jan 20;62(3):706-713. doi: 10.1364/AO.480083.

Abstract

Photonic bandgaps (PBGs) in conventional one-dimensional (1-D) photonic crystals (PhCs) composed of isotropic dielectrics are polarization-insensitive since the optical length within a isotropic dielectric layer is polarization-independent. Herein, we realize polarization-sensitive PBGs in hybrid 1-D PhCs composed of all-dielectric elliptical metamaterials (EMMs) and isotropic dielectrics. Based on the Bragg scattering theory and iso-frequency curve analysis, an analytical model is established to characterize the angle dependence of PBGs under transverse magnetic and transverse electric polarizations. The polarization-dependent property of PBGs can be flexibly controlled by the filling ratio of one of the isotropic dielectrics within all-dielectric EMMs. Assisted by the polarization-sensitive PBGs, high-performance polarization selectivity can be achieved. Our work offers a loss-free platform to achieve polarization-sensitive physical phenomena and optical devices.

摘要

光子带隙(PBG)在由各向同性介电材料组成的传统一维(1-D)光子晶体(PhC)中是偏振不敏感的,因为各向同性介电层内的光学长度与偏振无关。在此,我们在由全电介质椭圆超材料(EMM)和各向同性介电材料组成的混合一维 PhC 中实现了偏振敏感的 PBG。基于布拉格散射理论和等频线分析,建立了一个分析模型来表征横磁和横电两种偏振下 PBG 的角度依赖性。通过改变全电介质 EMM 中某一各向同性介电材料的填充率,可灵活控制 PBG 的偏振依赖性。在偏振敏感 PBG 的辅助下,可实现高性能的偏振选择性。我们的工作为实现偏振敏感的物理现象和光学器件提供了一个无损耗的平台。

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