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Exciton and core-level electron confinement effects in transparent ZnO thin films

机译:透明ZnO薄膜中的激子和核能级电子约束效应

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摘要

The excitonic light emission of ZnO films have been investigated by means of photoluminescence measurements in ultraviolet-visible region. Exciton confinement effects have been observed in thin ZnO coatings with thickness below 20 nm. This is enhanced by a rise of the intensity and a blue shift of the photoluminescence peak after extraction of the adsorbed species upon annealing in air. It is found experimentally that the free exciton energy (determined by the photoluminescence peak) is inversely proportional to the square of the thickness while core-level binding energy is inversely proportional to the thickness. These findings correlate very well with the theory of kinetic and potential confinements.
机译:ZnO薄膜的激发光发射已通过紫外可见区域中的光致发光测量进行了研究。在厚度小于20 nm的薄ZnO涂层中观察到了激子限制作用。在空气中退火后提取出吸附的物质之后,强度的增加和光致发光峰的蓝移增强了这种现象。通过实验发现,自由激子能量(由光致发光峰确定)与厚度的平方成反比,而核心能级结合能与厚度成反比。这些发现与动力学和势能限制的理论非常相关。

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