苯并环丁烯
材料科学
共面波导
介电常数
耗散因子
电介质
太赫兹辐射
特性阻抗
光学
传播常数
光电子学
回波损耗
衰减
相对介电常数
电阻抗
物理
微波食品加热
电信
天线(收音机)
计算机科学
量子力学
作者
Lei Cao,A.-S. Grimault-Jacquin,N. Zerounian,F. Aniel
标识
DOI:10.1016/j.infrared.2013.12.023
摘要
The low permittivity and the low loss tangent of the benzocyclobutene polymer (BCB) offers to coplanar waveguides (CPW) a low dispersive propagation properties at THz frequency. These transmission lines have been designed, modeled with a three dimensional (3D) solver of Maxwell equations based on finite element method (FEM) from 20 to 1000 GHz at various characteristic impedances (Zc). Their dispersion and losses (radiation, conduction and dielectric) have been investigated separately versus the waveguide size, the nature of the substrate (dielectric or semiconductor) to optimize the THz signal propagation. Monomode CPW on BCB numerically designed for various Zc were realized and measured with vector network analyzer (VNA). S-parameters of CPW are de-embedded by optimization of the accesses’ model. A good agreement is found between experimental and numerical results with low attenuation constants of 2.7 dB/mm and 3.5 dB/mm at 400 GHz and 500 GHz, respectively.
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