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由负各向异性电介质形成的薄界面波导中的戴亚科诺夫表面波。

Dyakonov surface waves in a thin interfacial waveguide formed by negatively anisotropic dielectrics.

作者信息

Chermoshentsev D A, Anikin E V, Gippius N A, Dyakov S A

出版信息

Opt Lett. 2024 Jun 1;49(11):3134-3137. doi: 10.1364/OL.524964.

Abstract

Dyakonov surface waves (DSWs) are electromagnetic surface waves that exist at the interface of two dissimilar materials, with at least one material being anisotropic. Although there are various types of these waves, they all exist in anisotropic materials with positive anisotropy. The requirement for positive anisotropy limits the choice of materials that can support these waves. In this study, we present a type of Dyakonov surface wave that occurs at the interface of negatively anisotropic materials. Specifically, we demonstrate their existence in a system consisting of two negatively anisotropic slabs confined between two perfect electric conductor (PEC) walls. By assuming a small distance between the walls, we derive analytical expressions for the propagation constant, penetration depth, and field distribution of these surface waves. We numerically demonstrate that these surface waves can also exist in structures beyond the approximations used to develop the theoretical framework. The existence of Dyakonov surface waves in negative crystals broadens the range of materials suitable for their practical implementation.

摘要

迪亚科诺夫表面波(DSWs)是存在于两种不同材料界面处的电磁表面波,其中至少有一种材料是各向异性的。尽管这类波有多种类型,但它们都存在于具有正各向异性的各向异性材料中。对正各向异性的要求限制了能够支持这些波的材料选择。在本研究中,我们展示了一种出现在负各向异性材料界面处的迪亚科诺夫表面波。具体而言,我们证明了它们存在于由夹在两个理想电导体(PEC)壁之间的两个负各向异性平板组成的系统中。通过假设壁之间的距离很小,我们推导出了这些表面波的传播常数、穿透深度和场分布的解析表达式。我们通过数值方法证明,这些表面波也可以存在于超出用于建立理论框架的近似范围的结构中。负晶体中迪亚科诺夫表面波的存在拓宽了适合其实际应用的材料范围。

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