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An experimental and theoretical mechanistic study of biexciton quantum yield enhancement in single quantum dots near gold nanoparticles

机译:一个机制的实验和理论研究在单一双激子的量子产量提高量子点附近的金纳米粒子

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In this work, we systematically investigated the plasmonic effect on blinking, photon antibunching behavior and biexciton emission of single CdSe/CdS core/shell quantum dots (QDs) near gold nanoparticles (NPs) with a silica shell (Au@SiO2). In order to obtain a strong interaction between the plasmons and excitons, the Au@SiO2 NPs and CdSe/CdS QDs of appropriate sizes were chosen so that the plasmon resonance overlaps with the absorption and emission of the QDs. We observed that in the regime of a low excitation power, the photon antibunching and blinking properties of single QDs were modified significantly when the QDs were on the Au@SiO2 substrates compared to those on glass. Most significantly, second-order photon intensity correlation data show that the presence of plasmons increases the ratio of the biexciton quantum yield over the exciton quantum yield (QY(BX)/Q(YX)). An electrodynamics model was developed to quantify the effect of plasmons on the lifetime, quantum yield, and emission intensity of the biexcitons for the QDs. Good agreement was obtained between the experimentally measured and calculated changes in QY(BX)/Q(YX) due to Au@SiO2 NPs, showing the validity of the developed model. The theoretical studies also indicated that the relative position of the QDs to the Au NPs and the orientation of the electric field are important factors that regulate the emission properties of the excitons and biexcitons of QDs. The study suggests that the multiexciton emission efficiency in QD systems can be manipulated by employing properly designed plasmonic structures.
机译:在这项工作中,我们系统地调查了电浆影响闪烁,光子antibunching行为和双激子发射的单身CdSe / cd核/壳量子点(量子点)附近的黄金用二氧化硅壳纳米颗粒(NPs)(Au@SiO2)。等离子体间的相互作用和激子,量子点Au@SiO2 NPs和CdSe / cd的合适尺寸选择,使等离子体共振重叠的吸收和发射量子点。激发的力量,光子antibunching和闪烁的单量子点被修改的属性量子点在Au@SiO2时明显在玻璃基板相比。值得注意的是,二阶光子强度相关数据显示,的存在等离子体双激子的比例增加量子产量在激子的量子产量(QY (BX) / Q (y))。发达国家量化等离子体的影响一生、量子产率和发射量子点的双激子的强度。实验之间的协议是获得测量并计算变化QY (BX) / Q (y)由于Au@SiO2 NPs,显示的有效性开发模型。表明量子点的相对位置非盟NPs和电动的方向场是重要的调节因素发射激子的性质双激子量子点的。multiexciton QD系统的发射效率可以通过使用操作正确设计吗电浆结构。

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