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通过周期性金属-电介质波导在太赫兹以下频段实现亚波长场限制。

Achieving subwavelength field confinement in sub-terahertz regime by periodic metallo-dielectric waveguides.

作者信息

Tehranian Ali, Ahmadi-Boroujeni Mehdi, Abbaszadeh Afshin

出版信息

Opt Express. 2019 Feb 18;27(4):4226-4237. doi: 10.1364/OE.27.004226.

DOI:10.1364/OE.27.004226
PMID:30876041
Abstract

In this paper, we report on a periodic metallo-dielectric structure that supports geometry-induced surface plasmons in the sub-terahertz regime. The proposed structure is made up of a dielectric-coated metallic grating sandwiched by parallel metal plates. Based on the modal analysis of 2D and 3D structures, the impact of a metal cladding and a customized dielectric coating on the dispersion relation and field distribution of the guided surface wave is investigated. It is found that modal field confinement is improved in the presence of a metal cladding without narrowing the operational bandwidth of the waveguide. Moreover, a customized subwavelength-sized dielectric coating based on high-resistivity silicon (HR-Si) can further improve the confinement. As a result, by incorporating both the HR-Si coating and the metal cladding in a conventional metallic grating, subwavelength field confinement is achieved over nearly a 2:1 frequency bandwidth. The achieved performance makes the realization of extremely-low radiation loss sharp bends possible. In particular, the achieved radiation loss is less than 0.5dB for a 90° bend of radius λ/4 based on a waveguide cross-sectional dimension of almost λ/10 where λ is the free-space wavelength at the maximum frequency of operation. The proposed waveguide is promising for the implementation of sub-terahertz guided-wave devices and circuits thanks to its outstanding field confinement and ruggedized and shielded structure.

摘要

在本文中,我们报道了一种周期性金属 - 电介质结构,该结构在亚太赫兹频段支持几何诱导表面等离子体激元。所提出的结构由夹在平行金属板之间的电介质涂层金属光栅组成。基于二维和三维结构的模态分析,研究了金属包层和定制电介质涂层对导波表面波的色散关系和场分布的影响。研究发现,在存在金属包层的情况下,模态场限制得到改善,而不会缩小波导的工作带宽。此外,基于高电阻率硅(HR - Si)的定制亚波长尺寸电介质涂层可以进一步改善限制。结果,通过在传统金属光栅中同时结合HR - Si涂层和金属包层,在近2:1的频率带宽内实现了亚波长场限制。所实现的性能使得实现极低辐射损耗的尖锐弯曲成为可能。特别是,基于几乎为λ/10的波导横截面尺寸(其中λ是最大工作频率下的自由空间波长),对于半径为λ/4的90°弯曲,实现的辐射损耗小于0.5dB。由于其出色的场限制以及坚固和屏蔽的结构,所提出的波导对于实现亚太赫兹导波器件和电路具有前景。

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Opt Express. 2019 Feb 18;27(4):4226-4237. doi: 10.1364/OE.27.004226.
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