The hybridization of plasmons in GaN-based two-dimensional channels

Lin Wang, Weida Hu, Xiaoshuang Chen, W. Lu
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Abstract

This paper displays the plasmon resonance phenomenon in single channel and double channel (DC) devices with varying dimensions in grating-gate period, slit and spacing between two channels in DC structures at terahertz domain. The results indicate that higher order plasmon can be excited in devices with longer period and narrow slit grating due to the enhanced coupling between plasmon and terahertz radiation. Splitting of plasmon resonance takes places in double channel device due to the hybridization between plasmons, which will improve the tunability of terahertz plasmonic device.
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氮化镓基二维通道中等离子体的杂化
本文在太赫兹域显示了单通道和双通道(DC)器件中光栅栅周期、狭缝和通道间距等尺寸变化的等离子体共振现象。结果表明,由于等离子体激元与太赫兹辐射之间的耦合增强,可以在长周期窄缝光栅器件中激发高阶等离子体激元。在双通道器件中,由于等离子体之间的杂化导致等离子体共振发生分裂,从而提高了太赫兹等离子体器件的可调性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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