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Optimization of band structure and quantum-size-effect tuning for two-photon absorption enhancement in quantum dots

机译:量子点中双光子吸收增强的能带结构和量子尺寸效应调谐的优化

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摘要

The two-photon absorption, 2PA, cross sections of PbS quantum dots, QDs, are theoretically and experimentally investigated and are shown to be enhanced with increasing quantum confinement. This is in contrast to our previous results for CdSe and CdTe QDs where the reduced density of states dominated and resulted in a decrease in 2PA with a decrease in QD size. Qualitatively this trend can be understood by the highly symmetric distribution of conduction and valence band states in PbS that results in an accumulation of allowed 2PA transitions in certain spectral regions. We also measure the frequency nondegenerate 2PA cross sections that are up to five times larger than for the degenerate case. We use a k?p four-band envelope function formalism to model the increasing trend of the two-photon cross sections due to quantum confinement and also due to resonance enhancement in the nondegenerate case.
机译:理论上和实验上研究了PbS量子点QD的双光子吸收2PA横截面,并显示出随着量子约束的增加而增强。这与我们先前对CdSe和CdTe QD的结果形成了鲜明对比,在CdSe和CdTe QD中,态密度的降低占主导,并导致2PA的减小和QD尺寸的减小。定性地可以通过PbS中导带和价带态的高度对称分布来理解这种趋势,这种分布导致某些光谱区域中允许的2PA跃迁累积。我们还测量了非退化2PA横截面的频率,该横截面比退化情况大5倍。我们使用k?p四频带包络函数形式来模拟由于量子限制以及在非简并情况下的共振增强而导致的两个光子截面的增长趋势。

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