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Strong plasmonic enhancement of biexciton emission: controlled coupling of a single quantum dot to a gold nanocone antenna

机译:双激子发射的强等离子体增强:单个量子点到金纳米锥天线的受控耦合

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摘要

Multiexcitonic transitions and emission of several photons per excitation comprise a very attractive feature of semiconductor quantum dots for optoelectronics applications. However, these higher-order radiative processes are usually quenched in colloidal quantum dots by Auger and other nonradiative decay channels. To increase the multiexcitonic quantum efficiency, several groups have explored plasmonic enhancement, so far with moderate results. By controlled positioning of individual quantum dots in the near field of gold nanocone antennas, we enhance the radiative decay rates of monoexcitons and biexcitons by 109 and 100 folds at quantum efficiencies of 60 and 70%, respectively, in very good agreement with the outcome of numerical calculations. We discuss the implications of our work for future fundamental and applied research in nano-optics.
机译:多激发跃迁和每次激发发射几个光子构成了用于光电应用的半导体量子点的一个非常吸引人的特征。但是,这些高阶辐射过程通常是通过俄歇(Auger)和其他非辐射衰变通道在胶体量子点中淬灭的。为了提高多激子量子效率,到目前为止,已有几个研究小组探索了等离子体增强,并取得了适度的结果。通过控制单个量子点在金纳米锥天线近场中的位置,我们将单激子和双激子的辐射衰减率分别提高了109倍和100倍,量子效率分别为60%和70%,与发射的结果非常吻合数值计算。我们讨论了我们的工作对未来纳米光学基础和应用研究的意义。

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