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Anisotropic emission from multilayered plasmon resonator nanocomposites of isotropic semiconductor quantum dots

机译:各向同性半导体量子点的多层等离子体激元谐振器纳米复合材料的各向异性发射

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摘要

We propose and demonstrate a nanocomposite localized surface plasmon resonator embedded into an artificial three-dimensional construction. Colloidal semiconductor quantum dots are assembled between layers of metal nanoparticles to create a highly strong plasmon-exciton interaction in the plasmonic cavity. In such a multilayered plasmonic resonator architecture of isotropic CdTe quantum dots, we observed polarized light emission of 80% in the vertical polarization with an enhancement factor of 4.4, resulting in a steady-state anisotropy value of 0.26 and reaching the highest quantum efficiency level of 30% ever reported for such CdTe quantum dot solids. Our electromagnetic simulation results are in good agreement with the experimental characterization data showing a significant emission enhancement in the vertical polarization, for which their fluorescence decay lifetimes are substantially shortened by consecutive replication of our unit cell architecture design. Such strongly plasmon-exciton coupling nanocomposites hold great promise for future exploitation and development of quantum dot plasmonic biophotonics and quantum dot plasmonic optoelectronics.
机译:我们提出并证明了嵌入到人工三维结构中的纳米复合材料局部表面等离子体激元谐振器。胶体半导体量子点在金属纳米粒子的层之间组装,以在等离子体腔中产生高度强的等离子体激子相互作用。在这种各向同性的CdTe量子点的多层等离子共振器架构中,我们观察到垂直偏振光中80%的偏振光发射具有4.4的增强因子,从而导致稳态各向异性值为0.26,并达到了最高的量子效率水平。据报道有30%的CdTe量子点固体。我们的电磁仿真结果与实验表征数据非常吻合,表明在垂直极化方面发射显着增强,通过连续复制我们的晶胞结构设计,其荧光衰减寿命大大缩短。这种强等离子体激子耦合纳米复合材料为量子点等离子体生物光子学和量子点等离子体光电子学的未来开发和发展提供了广阔的前景。

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