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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Electrically Tunable Surface Plasmon Source for THz Applications
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Electrically Tunable Surface Plasmon Source for THz Applications

机译:太赫兹应用的电可调表面等离子源

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摘要

In this paper, we propose a design for a widely tunable solid-state optically and electrically pumped terahertz source based on the Smith–Purcell free-electron laser. Our design consists of a thin dielectric layer sandwiched between an upper corrugated structure and a lower layer of thin metal, semiconductor, or high-electron-mobility material. The lower layer is for current streaming, which replaces the electron beam in the Smith–Purcell free-electron laser design. The upper layer consists of two microgratings for optical pumping, and a nanograting to couple with electrical pumping in the lower layer. The optically generated surface plasmon waves from the upper layer and the electrically induced surface plasmon waves from the lower layer are then coupled. Emission enhancement occurs when the plasmonic waves in both layers are resonantly coupled.
机译:在本文中,我们提出了一种基于Smith-Purcell自由电子激光器的可广泛调谐的固态光学和电泵太赫兹源的设计。我们的设计包括一个夹在上层波纹结构和下层金属,半导体或高电子迁移率材料之间的薄介电层。下层用于电流传输,它取代了Smith-Purcell自由电子激光器设计中的电子束。上层由两个用于光学泵浦的微光栅和一个与下层中的电泵浦耦合的纳米光栅组成。然后将来自上层的光学产生的表面等离子体激元波和来自下层的电诱导的表面等离子体激元波耦合。当两层中的等离子波共振耦合时,就会发生发射增强。

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