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Plasmon-mediated radiative energy transfer across a silver nanowire array via resonant transmission and subwavelength imaging

机译:通过共振传输和亚波长成像,等离子介导的辐射能在银纳米线阵列上的传递

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Efficient plasmon-mediated excitation energy transfer between the CdSe/ZnS semiconductor quantum dots (QDs) across the silver nanowire array up to 560 nm in length is observed. The subwavelength imaging and spectral response of the silver nanowire arrays with near-field point-source excitations are revealed by theoretical simulations. Our studies demonstrate three advantages of the nanosystem: efficient exciton-plasmon conversion at the input side of the array through near-field strong coupling, directional waveguidance and resonant transmission via half-wave plasmon modes of the nanowire array, and subwavelength imaging at the output side of the array. These advantages allow a long-range radiative excitation energy transfer with a high efficiency and a good directionality.
机译:CdSe / ZnS半导体量子点(QDs)之间的有效等离子激元介导的激发能量转移跨整个银纳米线阵列,长度可达560 nm。通过理论模拟揭示了具有近场点源激发的银纳米线阵列的亚波长成像和光谱响应。我们的研究证明了纳米系统的三个优点:通过近场强耦合在阵列输入侧进行有效的激子-等离子体激元转换,通过纳米线阵列的半波等离子体激元模式进行定向波导和共振传输,以及在输出处进行亚波长成像数组的一面。这些优点允许以高效率和良好的方向性进行远距离辐射激发能量转移。

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