太赫兹工作微盘谐振器的设计与制造

T. Adam, S. Shi, S. Ray, R. Troeger, D. Prather, J. Kolodzey
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引用次数: 7

摘要

报道了在太赫兹频率下工作的谐振器和波导的设计和制造。计算了带光子元件和不带光子元件的谐振腔的共振频率、模式约束、质量因子和阻带。结果表明,在光子晶格的传输带隙内可以存在非常窄的模式。设计和制造了以10thz为中心的高质量低语通道模式的微磁盘器件。结合分子束外延生长的硅锗量子阱,这些谐振器是硅基微型远红外激光器的有希望的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The design and fabrication of microdisk resonators for terahertz frequency operation
The design and fabrication of resonators and waveguides, operating at THz frequencies are reported. Resonance frequencies, mode confinement, quality factors, and stop-bands were calculated for resonators with and without photonic elements. The estimations show that very narrow modes can exist within the propagation bandgap of a photonic lattice. Microdisk devices were designed and fabricated for high-quality whispering-gallery modes centered around 10 THz. Combined with silicon-germanium quantum wells grown by molecular beam epitaxy, these resonators are promising candidates for silicon-based miniature far-infrared lasers.
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