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A study of nitrogen incorporation in pyramidal site-controlled quantum dots

机译:锥体定点量子点中氮的掺入研究

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摘要

We present the results of a study of nitrogen incorporation in metalorganic-vapour-phase epitaxy-grown site-controlled quantum dots (QDs). We report for the first time on a significant incorporation (approximately 0.3%), producing a noteworthy red shift (at least 50 meV) in some of our samples. Depending on the level of nitrogen incorporation/exposure, strong modifications of the optical features are found (variable distribution of the emission homogeneity, fine-structure splitting, few-particle effects). We discuss our results, especially in relation to a specific reproducible sample which has noticeable features: the usual pattern of the excitonic transitions is altered and the fine-structure splitting is suppressed to vanishing values. Distinctively, nitrogen incorporation can be achieved without detriment to the optical quality, as confirmed by narrow linewidths and photon correlation spectroscopy.
机译:我们提出了在有机金属气相外延生长的位控量子点(QDs)中掺入氮的研究结果。我们首次报告大量掺入(约0.3%),在我们的一些样品中产生了值得注意的红移(至少50 meV)。根据氮掺入/暴露的水平,发现了光学特征的强烈改变(发射均匀性的可变分布,精细的结构分裂,很少的颗粒效应)。我们讨论了我们的结果,尤其是与具有显着特征的特定可重现样品有关的结果:改变了激子跃迁的通常模式,并且将细微结构分裂抑制为消失的值。如窄线宽和光子相关光谱法所证实的,与众不同的是,可以在不损害光学质量的情况下实现氮的掺入。

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