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首页> 外文期刊>Scientific reports. >Cascaded plasmon-plasmon coupling mediated energy transfer across stratified metal-dielectric nanostructures
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Cascaded plasmon-plasmon coupling mediated energy transfer across stratified metal-dielectric nanostructures

机译:级联等离子体 - 等离子体耦合介导的跨分层金属介电纳米结构的能量转移

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摘要

Surface plasmon (SP) coupling has been successfully applied to nonradiative energy transfer via exciton-plasmon-exciton coupling in conventionally sandwiched donor-metal film-acceptor configurations. However, these structures lack the desired efficiency and suffer poor photoemission due to the high energy loss. Here, we show that the cascaded exciton-plasmon-plasmon-exciton coupling in stratified architecture enables an efficient energy transfer mechanism. The overlaps of the surface plasmon modes at the metal-dielectric and dielectric-metal interfaces allow for strong cross-coupling in comparison with the single metal film configuration. The proposed architecture has been demonstrated through the analytical modeling and numerical simulation of an oscillating dipole near the stratified nanostructure of metal-dielectric-metal-acceptor. Consistent with theoretical and numerical results, experimental measurements confirm at least 50% plasmon resonance energy transfer enhancement in the donor-metal-dielectric-metal-acceptor compared to the donor-metal-acceptor structure. Cascaded plasmon-plasmon coupling enables record high efficiency for exciton transfer through metallic structures.
机译:通过在常规夹在的供体 - 金属膜 - 受体构型中,成功地应用于通过Exciton-血管激素耦合的非抗体能量转移的表面等离子体(SP)耦合。然而,这些结构缺乏所需的效率并且由于高能量损失而遭受差的光电。在这里,我们表明,分层架构中的级联激子 - 等离子体 - 等离子耦合使得能够有效的能量转移机制。与单金属膜配置相比,金属介质和介质 - 金属界面处的表面等离子模式的重叠允许强耦合。通过在金属介质 - 金属 - 受体的分层纳米结构附近的振荡偶极子的分析建模和数值模拟证明了所提出的架构。与施主 - 金属 - 受体结构相比,实验测量与理论和数值结果一致,实验测量确认了供体 - 金属介质金属 - 受体中的至少50%的等离子体共振能量转移增强。通过金属结构,级联等离子体耦合能够记录激发器转移的高效率。

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