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Plasmon-mediated resonance energy transfer by metallic nanorods

机译:等离子介导的金属纳米棒共振能量转移

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摘要

AbstractWe investigate the enhancement of the resonance energy transfer rate between donor and acceptor associated by the surface plasmons of the Ag nanorods on a SiO2 substrate. Our results for a single nanorod with different cross sections reveal that the cylinder nanorod has the strongest ability to enhance the resonance energy transfer rate. Moreover, for donor and acceptor with nonparallel polarization directions, we propose simple V-shaped nanorod structures which lead to the remarkable resonance energy transfer enhancement that is ten times larger than that by the single nanorod structure. We demonstrate that these structures have good robustness and controllability. Our work provides a way to improve the resonance energy transfer efficiency in integrated photonic devices.
机译:摘要我们研究了在SiO2衬底上由Ag纳米棒的表面等离激元引起的供体与受体之间共振能传递速率的提高。我们对具有不同横截面的单个纳米棒的研究结果表明,圆柱纳米棒具有最强的增强共振能量传递速率的能力。此外,对于具有不平行极化方向的供体和受体,我们提出了简单的V形纳米棒结构,该结构导致显着的共振能量转移增强,是单个纳米棒结构的十倍。我们证明这些结构具有良好的鲁棒性和可控性。我们的工作提供了一种提高集成光子器件中共振能量传输效率的方法。

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