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Antenna surface plasmon emission by inelastic tunneling

机译:通过非弹性隧穿发射天线表面等离子体激元

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摘要

Surface plasmons polaritons are mixed electronic and electromagnetic waves. They have become a workhorse of nanophotonics because plasmonic modes can be confined in space at the nanometer scale and in time at the 10 fs scale. However, in practice, plasmonic modes are often excited using diffraction-limited beams. In order to take full advantage of their potential for sensing and information technology, it is necessary to develop a microscale ultrafast electrical source of surface plasmons. Here, we report the design, fabrication and characterization of nanoantennas to emit surface plasmons by inelastic electron tunneling. The antenna controls the emission spectrum, the emission polarization, and enhances the emission efficiency by more than three orders of magnitude. We introduce a theoretical model of the antenna in good agreement with the results.
机译:表面等离激元极化子是混合的电子和电磁波。它们已成为纳米光子学的主力军,因为等离子波模式可以限制在纳米尺度的空间中,而时间可以限制在10μfs尺度。但是,实际上,通常使用衍射极限束来激发等离激元模式。为了充分利用它们在传感和信息技术方面的潜力,有必要开发一种表面等离子体激元的微型超快电源。在这里,我们报告通过非弹性电子隧穿来发射表面等离子体激元的纳米天线的设计,制造和表征。天线控制发射频谱,发射极化,并将发射效率提高三个数量级以上。我们介绍了与结果非常吻合的天线理论模型。

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