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An Electrically-Driven GaAs Nanowire Surface Plasmon Source

机译:电驱动的GaAs纳米线表面等离子源

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摘要

Over the past decade, the properties of plasmonic waveguides have extensively been studied as key elements in important applications that include biosensors, optical communication systems, quantum plasmonics, plasmonic logic, and quantum-cascade lasers. Whereas their guiding properties are by now fairly well-understood, practical implementation in chipscale systems is hampered by the lack of convenient electrical excitation schemes. Recently, a variety of surface plasmon lasers have been realized, but they have not yet been waveguide-coupled. Planar incoherent plasmonic sources have recently been coupled to plasmonic guides but routing of plasmonic signals requires coupling to linear waveguides, Here, we present an experimental demonstration of electrically driven GaAs nanowire light sources integrated with plasmonic nanostrip waveguides with a physical cross-section of 0.08λ~2. The excitation and waveguiding of surface plasmon-polaritons (SPPs) is experimentally demonstrated and analyzed with the help of full-field electromagnetic simulations. Splitting and routing of the electrically generated SPP signals around 90° bends are also shown. The realization of integrated plasmon sources greatly increases the applicability range of plasmonic waveguides and routing elements.
机译:在过去的十年中,已经广泛地研究了等离子体激元的特性,将其作为重要应用中的关键元素,这些重要应用包括生物传感器,光通信系统,量子等离子体,等离子体逻辑和量子级联激光器。到目前为止,它们的指导特性已经被很好地理解了,但是由于缺乏便利的电激励方案,阻碍了芯片级系统的实际实施。近来,已经实现了多种表面等离子体激元激光器,但是它们还没有被波导耦合。平面不相干等离子体源最近已经耦合到等离子体波导,但是等离子体信号的路由需要耦合到线性波导。在这里,我们提供电学驱动的GaAs纳米线光源与等离子体纳米带波导集成在一起的物理截面为0.08λ 〜2。表面等离子体激元-极化子(SPPs)的激发和波导在全场电磁仿真的帮助下进行了实验演示和分析。还显示了在90°弯曲处电产生的SPP信号的分离和路由。集成等离子体激元源的实现大大增加了等离子体激元波导和路由元件的适用范围。

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