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首页> 外文期刊>Physical review >Collective electromagnetic emission from molecular layers on metal nanostructures mediated by surface plasmons
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Collective electromagnetic emission from molecular layers on metal nanostructures mediated by surface plasmons

机译:表面等离子体激元介导的金属纳米结构上分子层的集体电磁发射

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摘要

Collective electromagnetic processes stemming from molecular emission close to complex nanostructured metal surfaces pumped at and/or near surface-plasmon resonances are theoretically investigated. A classical electrodynamics model is used to describe macroscopically the surface molecular layer emission. Generalized Fresnel coefficients are analytically obtained for planar surfaces, indeed predicting collective quenching for redshifted emission at given angles. The model is introduced into a scattering formulation based on surface integral equations in order to explore collective spontaneous emission near metallic nanoantennas and surface-enhanced Raman scattering. Frequency-shifted near-field patterns and properly defined enhancement factors are obtained that manifest collective processes and cannot be simply inferred from calculations of near fields at the pump frequency.
机译:理论上研究了由分子发射引起的,靠近复杂的纳米结构金属表面的分子发射的集体电磁过程。经典的电动力学模型用于宏观描述表面分子层的发射。可以通过分析获得平坦表面的广义菲涅耳系数,从而确实预测了在给定角度下红移发射的集体猝灭。该模型被引入基于表面积分方程的散射公式中,以探索金属纳米天线附近的集体自发发射和表面增强拉曼散射。获得了频移的近场模式和适当定义的增强因子,这些模式表现出集体过程,不能简单地从泵浦频率下的近场计算中得出。

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