Theoretical and experimental studies of highly selective planar two-dimensional Bragg structures based on dielectric waveguides in the terahertz frequency range

N. Ginzburg, N. Peskov, V. Zaslavsky, E. Kocharovskaya, A. Malkin, A. Sergeev, M. Proyavin, D. Sobolev
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Abstract

Based on theoretical approach and three-dimensional modeling using the CST Microwave Studio code, planar dielectric two-dimensional Bragg structures in terahertz frequency range were developed and manufactured. Proof-of-principle electrodynamic experiments on the “cold” testing of these structures were carried out. It is shown that the experimental results are in good agreement with the theoretical predicts, including the existence of the highest Q mode inside the Bragg reflection band in the absence of periodicity defects.
在太赫兹频率范围内基于介质波导的高选择性平面二维Bragg结构的理论和实验研究
基于理论方法和利用CST Microwave Studio代码进行三维建模,开发和制造了太赫兹频率范围内的平面介电二维布拉格结构。对这些结构进行了“冷”测试的原理验证电动力学实验。结果表明,实验结果与理论预测一致,在没有周期性缺陷的情况下,布拉格反射带内存在最高Q模式。
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