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Electrically Tunable Surface Plasmon for THz Emission, Detection and other Applications

机译:用于THz发射,检测和其他应用的电动调谐表面等离子体

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In this paper, we present a design for a widely tunable solid-state optically and electrically pumped THz laser based on the Smith-Purcell free-electron laser. In the free-electron laser, an energetic electron beam pumps a metallic grating to generate surface plasmons. Our solid-state optically pumped design consists of a thin layer of dielectic, such as SiN_x, sandwiched between a corrugated structure and a thin metal or semiconductor layer. The lower layer is for current streaming, and replaces the electron beam in the original design. The upper layer consists of one micro-grating for coupling the electromagnetic field in, another for coupling out, and a nano-grating for coupling with the current in the lower layer for electromagnetic field generation. The surface plasmon waves generated from the upper layer by an external electromagnetic field, and the lower layer by the applied current, are coupled. Emission enhancement occurs when the plasmonic waves in both layers are resonantly coupled.
机译:在本文中,我们介绍了基于史密斯 - 紫外线自由电子激光器的广泛可调的固态光学和电气泵浦激光的设计。在自由电子激光器中,能量电子束泵送金属光栅以产生表面等离子体。我们的固态光学泵浦设计包括薄层的大型,例如SIN_X,夹在波纹结构和薄金属或半导体层之间。下层用于电流流,并在原始设计中取代电子束。上层由一个微光栅组成,用于耦合用于耦合的电磁场,以及用于与电磁场产生的下层中的电流耦合的纳米光栅。通过外部电磁场和施加电流从上层产生的表面等离子体波,耦合。当两层中的等离子体波共谐振时,发生发射增强。

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