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Magnesium effects on CdSe self-assembled quantum dot formation on ZnxCdyMg1-x-ySe layers

机译:镁对ZnxCdyMg1-x-ySe层上CdSe自组装量子点形成的影响

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摘要

Optical and morphological studies are used to investigate the effects of chemical composition and, in particular, the magnesium content of the ZnxCdyMg1-x-ySe barrier layers on the size, density and uniformity of CdSc self-assembled quantum dots (QDs). A reduction of the uncapped QD size, as well as a blue shift of the capped QD photoluminescence peak position by increasing Mg concentration in the ZnxCdyMg1-x-ySe barrier has been demonstrated by changing the Mg cell temperature during growth. In addition, a more uniform and more densely packed QD layer has been observed with an increase of the MgSe fraction in the ZnxCdyMg1-x-ySe barrier layer using three-dimensional topographic atomic force microscopy images of the surface of uncapped QDs. Results point to Mg as a chemical factor that induces QD formation, either by increasing the density of atomic steps or/and by changing the energy of the ZnxCdyMg1-x-ySe surface. (c) 2006 Elsevier B.V. All rights reserved.
机译:光学和形态学研究用于研究化学组成,特别是ZnxCdyMg1-x-ySe势垒层中镁含量对CdSc自组装量子点(QDs)的大小,密度和均匀性的影响。通过增加生长过程中的Mg细胞温度,已证明通过增加ZnxCdyMg1-x-ySe势垒中的Mg浓度,可以减小未封端QD尺寸的减小,以及封端QD光致发光峰位置的蓝移。另外,使用未封盖的量子点表面的三维形貌原子力显微镜图像,观察到了更均匀和更密集的量子点层,并且ZnxCdyMg1-x-ySe势垒层中MgSe分数的增加。结果表明,Mg是诱导QD形成的化学因子,可以通过增加原子步长密度或/和通过更改ZnxCdyMg1-x-ySe表面的能量来实现。 (c)2006 Elsevier B.V.保留所有权利。

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