太赫兹范围内介质波导用硅基超材料

Francesca Schenkel, Irwin Barengolts, Lisa Schmitt, I. Rolfes, M. Hoffmann, J. Barowski
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引用次数: 1

摘要

这一贡献提出了硅基超材料结构的设计、模拟和表征测量。为了在硅片上实现微机械太赫兹波导系统,需要机械夹具来固定和操纵波导。如果这些结构的介电常数与波导本身相当,则场约束显着减少。因此,材料结构为超表面,使用的特征尺寸远小于波长。从而降低了有效介电常数,同时保持了较高的机械稳定性。本文在全波模拟的基础上分析了该超材料在300 GHz左右的有效介电常数,并研究了其各向异性行为。仿真结果得到了实际测量结果的补充和验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Silicon based Metamaterials for Dielectric Waveguides in the THz Range
This contribution presents designs, simulations, and characterizing measurements of silicon based metamaterial structures. In order to realize a micromachined THz waveguide system on a silicon wafer, mechanical fixtures to hold and to manipulate the waveguide are needed. If the dielectric constant of these structures is comparable to the waveguide itself, the field confinement is significantly reduced. Therefore, the material is structured as a metasurface using feature sizes that are much smaller than the wavelength. Thus, reducing the effective dielectric constant, while keeping a high mechanical stability. In this contribution the effective dielectric constant of this metamaterial is analyzed at around 300 GHz based on full-wave simulations and also investigated regarding its anisotropic behavior. The simulations are complemented and validated by measurements.
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