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Manipulating Nonlinear Emission and Cooperative Effect of CdSe/ZnS Quantum Dots by Coupling to a Silver Nanorod Complex Cavity

机译:通过耦合到银纳米棒复合腔来操纵CdSe / ZnS量子点的非线性发射和协同效应

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摘要

Colloidal semiconductor quantum dots have three-dimensional confined excitons with large optical oscillator strength and gain. The surface plasmons of metallic nanostructures offer an efficient tool to enhance exciton-exciton coupling and excitation energy transfer at appropriate geometric arrangement. Here, we report plasmon-mediated cooperative emissions of approximately one monolayer of ensemble CdSe/ZnS quantum dots coupled with silver nanorod complex cavities at room temperature. Power-dependent spectral shifting, narrowing, modulation, and amplification are demonstrated by adjusting longitudinal surface plasmon resonance of silver nanorods, reflectivity and phase shift of silver nanostructured film, and mode spacing of the complex cavity. The underlying physical mechanism of the nonlinear excitation energy transfer and nonlinear emissions are further investigated and discussed by using time-resolved photoluminescence and finite-difference time-domain numerical simulations. Our results suggest effective strategies to design active plasmonic complex cavities for cooperative emission nanodevices based on semiconductor quantum dots.
机译:胶体半导体量子点具有三维约束激子,具有大的光学振荡器强度和增益。金属纳米结构的表面等离激元提供了一种有效的工具,可以在适当的几何排列下增强激子-激子耦合和激发能的传递。在这里,我们报告在室温下,约一个单层的集成CdSe / ZnS量子点与银纳米棒复合腔耦合的等离子体激元介导的协同发射。通过调节银纳米棒的纵向表面等离子体激元共振,银纳米结构膜的反射率和相移以及复合腔的模式间距,可以证明与功率有关的光谱位移,变窄,调制和放大。通过时间分辨光致发光和时域有限差分数值模拟,进一步研究和讨论了非线性激发能传递和非线性发射的潜在物理机理。我们的结果提出了有效的策略,以基于半导体量子点的协作发射纳米器件设计有源等离子体激元复合腔。

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