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首页> 外文期刊>Nanoscale >Plasmon–exciton interaction strongly increases the efficiency of a quantum dot-based near-infrared photodetector operating in the two-photon absorption mode under normal conditions
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Plasmon–exciton interaction strongly increases the efficiency of a quantum dot-based near-infrared photodetector operating in the two-photon absorption mode under normal conditions

机译:Plasmon-exciton交互强烈增长量子效率基于近红外双光子的光电探测器的操作在正常情况下吸收模式

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摘要

Semiconductor quantum dots (QDs) are known for their high two-photon absorption (TPA) capacity. This allows them to efficiently absorb infrared photons with energies lower than the bandgap energy. Moreover, TPA in QDs can be further enhanced by the interaction of excitons of the QDs with plasmons of a metal nanoparticle. We fabricated nonlinear plasmon–exciton photodetectors based on QDs and silver nanoplates (SNPs) to demonstrate the optoelectronic application of these effects. A thin layer of CdSe QDs was used as a source of charge carriers for a photoresistor-type photodetector. SNPs with near-infrared plasmon modes were introduced into the layer of QDs to increase the light absorption efficiency. Under near-infrared irradiation, the power of the dependence of the photocurrent on the excitation intensity was twice the power of the corresponding dependence under one-photon excitation with visible light. This proved that the new photodetector efficiently operated under two-photon excitation. Although the SNP light absorption was linear, energy was transferred from plasmons to excitons in the two-quantum mode, which led to a nonlinear dependence. Moreover, we found that the photocurrent from the designed photodetector containing the QD–SNP composite was an order of magnitude higher than that from a photodetector containing QDs alone. This can be explained by the plasmon-induced increase in the TPA efficiency.
机译:半导体量子点(量子点)而闻名他们的高双光子吸收(TPA)能力。这使他们有效地吸收红外线光子能量小于带隙能量。增强的激子之间的相互作用量子点和金属纳米粒子的等离子体。的非线性plasmon-exciton基于量子点和银nanoplates光电探测器(单核苷酸多态性)演示了光电子这些效应的应用。CdSe电荷载体的量子点作为来源photoresistor-type光电探测器。介绍了近红外等离子体模式量子点层增加光的吸收效率。光电流的依赖激励强度是两倍的力量相应的依赖一个光子与可见光激发。新光电探测器有效运作双光子激发。吸收是线性的,能量转移从等离子体激子在两个量子模式,导致非线性依赖。此外,我们发现的光电流设计包含QD-SNP光电探测器复合高出一个数量级从量子点光电探测器包含孤单。这可以解释为plasmon-inducedTPA增加效率。

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