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Surface Plasmon-Mediated Energy Transfer in Hetero-Gap Au-Ag Nanowires

机译:等离子Au-Ag纳米线中的表面等离子介导的能量转移。

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摘要

We report the observation of energy transfer from a gold (Au) nanodisk pair to a silver (Ag) nanowire across a 120 nm gap via surface plasmon resonance (SPR) excitation. The enhanced electromagnetic (EM) fields generated by Au SPR excitation induce oscillation of the conduction electrons in the Ag segment, transferring energy to it even though the Ag segment has only weak resonant interactions with the incident electromagnetic radiation. The induced Ag SPR produces strong EM fields at the position of the Ag segment, leading to a Raman signal ~15 times greater than when the Ag segment is alone (not adjacent to the Au nanodisk pair). The Raman intensity is found to depend nonlinearly on the incident laser intensity for laser power densities of 10 kW/cm2, which is consistent with the results of electromagnetic theory calculations which are not able to account for the factor of 15 enhancement based on a linear mechanism. This suggests that energy transfer from the Au disk pair to the Ag segment involves an enhanced nonlinear polarization mechanism such as can be produced by the electronic Kerr effect or stimulated Raman scattering.
机译:我们报告观察到的能量通过表面等离振子共振(SPR)激发从金(Au)纳米盘对跨120 nm间隙转移到银(Ag)纳米线。 Au Ag SPR激发产生的增强电磁(EM)场会诱发Ag段中的传导电子振荡,即使Ag段与入射电磁辐射之间的共振相互作用较弱,也会将能量传递给它。诱导的Ag SPR在Ag段的位置产生强的EM场,导致拉曼信号比单独的Ag段(不与Au纳米盘对相邻)大15倍。对于激光功率密度为10 kW / cm 2 的情况,发现拉曼强度与入射激光强度呈非线性关系,这与电磁理论计算的结果相符,后者无法解释该因素基于线性机制的15种增强功能。这表明从Au盘对到Ag段的能量转移涉及增强的非线性极化机制,例如可以通过电子克尔效应或受激拉曼散射产生的极化极化机制。

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