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Loss mechanisms of surface plasmon polaritons on gold probed by cathodoluminescence imaging spectroscopy

机译:阴极荧光光谱法探测金在表面等离子体激元的损失机理

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摘要

We use cathodoluminescence imaging spectroscopy to excite surface plasmon polaritons and measure their decay length on single crystal and polycrystalline gold surfaces. The surface plasmon polaritons are excited on the gold surface by a nanoscale focused electron beam and are coupled into free space radiation by gratings fabricated into the surface. By scanning the electron beam on a line perpendicular to the gratings, the propagation length is determined. Data for single-crystal gold are in agreement with calculations based on dielectric constants. For polycrystalline films, grain boundary scattering is identified as additional loss mechanism, with a scattering coefficient SG=0.2%.
机译:我们使用阴极发光成像光谱来激发表面等离激元极化子,并测量它们在单晶和多晶金表面上的衰减长度。表面等离激元极化子在纳米表面上被纳米级聚焦电子束激发,并通过在表面上制造的光栅耦合到自由空间辐射中。通过在垂直于光栅的线上扫描电子束,可以确定传播长度。单晶金的数据与基于介电常数的计算一致。对于多晶膜,晶界散射被认为是附加的损耗机制,散射系数SG = 0.2%。

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