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具有(手性)双曲超材料缺陷的一维光子晶体中的各向同性缺陷模式。

Omnidirectional defect mode in one-dimensional photonic crystal with a (chiral) hyperbolic metamaterial defect.

出版信息

Opt Express. 2023 Jan 16;31(2):1432-1441. doi: 10.1364/OE.478562.

Abstract

The wavelength of defect mode in all-dielectric photonic crystals (PCs) with a dielectric defect are blue-shifted as incident angle increases for both transverse electric and transverse magnetic (TM) polarized waves. The blue-shifted property of defect mode limits the design of some optical devices including omnidirectional optical filters and wide-angle polarization selectors. Here we introduce a hyperbolic metamaterial (HMM) layer as a defect into dielectric one-dimensional photonic crystals (1DPCs) to obtain an omnidirectional defect mode for TM polarized waves at near-infrared regimes. Since only one HMM layer is introduced, omnidirectional defect mode with transmittance as high as 71% can be realized. Because of the unusual angle-dependence of propagating phase in the HMM defect, the total phase for satisfying the resonance condition of defect mode can be unchanged in a wide-angle range at a fixed wavelength, which leads to the omnidirectional defect mode. Moreover, the manipulation of propagating phase can be generalized to the case of circularly polarized waves, and we obtain an omnidirectional defect mode for left-handed circularly polarized waves in 1DPCs with a chiral hyperbolic metamaterial defect. Nevertheless, the defect mode for right-handed circularly polarized waves is still blue-shifted. Such spin-selective omnidirectional defect mode can be utilized to greatly enhance circular dichroism in a wide-angle range up to 64.1°. Our structure facilitates the design of omnidirectional optical filters with a high transmittance and circular polarization selectors working in a wide-angle range.

摘要

在具有介电缺陷的全电介质光子晶体 (PC) 中,所有入射角的缺陷模式的波长都随着入射角的增加而蓝移,无论是横电 (TE) 极化波还是横磁 (TM) 极化波。缺陷模式的蓝移特性限制了一些光学器件的设计,包括全向光滤波器和广角偏振选择器。在这里,我们将一个双曲超材料 (HMM) 层作为缺陷引入到介电一维光子晶体 (1DPC) 中,以在近红外区域获得 TM 极化波的全向缺陷模式。由于只引入了一个 HMM 层,因此可以实现高达 71%的 TM 极化波的全向缺陷模式透射率。由于在 HMM 缺陷中传播相位的异常角度依赖性,在固定波长下,满足缺陷模式共振条件的总相位可以在宽角度范围内保持不变,从而产生全向缺陷模式。此外,传播相位的操纵可以推广到圆偏振波的情况,我们在具有手性双曲超材料缺陷的 1DPC 中获得了左旋圆偏振波的全向缺陷模式。然而,右旋圆偏振波的缺陷模式仍然是蓝移的。这种自旋选择性的全向缺陷模式可以用于在宽角度范围内大大增强圆二色性,最高可达 64.1°。我们的结构有利于设计具有高透射率的全向光滤波器和在宽角度范围内工作的圆偏振选择器。

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