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Overcoming quenching in plasmonic nanoantennas

机译:克服等离子体纳米纳米克服淬火

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The radiative efficiency of plasmonic nanoantennas is often thought to be plagued by non-radiative processes known as quenching. We have used a modal electromagnetic theory based on the concept of quasinormal modes to analyze the mechanisms of spontaneous emission in plasmonic nanoantennas. The theory allows for a quantitative investigation of the interplay between the decay into the antenna mode and the quenching. We provide guidelines to design plasmonic nanoantennas able to overcome quenching. Following these guidelines, we show that surface plasmon generation by inelastic electron tunneling through STM tips can be enhanced by more than two orders of magnitude.
机译:纳米纳米纳米的辐射效率通常认为被称为猝灭的非辐射过程困扰。我们使用了基于拟异常模式的概念的模态电磁理论,分析了等离子体纳米环中的自发排放机制。该理论允许定量地研究衰减与天线模式和淬火之间的相互作用。我们提供设计等离子体纳米环绕能够克服淬火的指导方针。遵循这些指导方针,我们表明,通过STM尖端的无弹性电子隧穿的表面等离子体可以通过两个以上的数量级来增强。

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