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Ge/Si core/shell quantum dots in alumina: tuning the optical absorption by the core and shell size

机译:氧化铝中的Ge / Si核/壳量子点:通过核和壳的大小来调整光吸收

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摘要

Ge/Si core/shell quantum dots (QDs) recently received extensive attention due to their specific properties induced by the confinement effects of the core and shell structure. They have a type II confinement resulting in spatially separated charge carriers, the electronic structure strongly dependent on the core and shell size. Herein, the experimental realization of Ge/Si core/shell QDs with strongly tunable optical properties is demonstrated. QDs embedded in an amorphous alumina glass matrix are produced by simple magnetron sputtering deposition. In addition, they are regularly arranged within the matrix due to their self-assembled growth regime. QDs with different Ge core and Si shell sizes are made. These core/shell structures have a significantly stronger absorption compared to pure Ge QDs and a highly tunable absorption peak dependent on the size of the core and shell. The optical properties are in agreement with recent theoretical predictions showing the dramatic influence of the shell size on optical gap, resulting in 0.7 eV blue shift for only 0.4 nm decrease at the shell thickness. Therefore, these materials are very promising for light-harvesting applications.
机译:Ge / Si核/壳量子点(QDs)由于受到核和壳结构限制效应的诱导而具有特殊的性能,因此最近受到了广泛的关注。它们具有II型限制,导致空间分离的电荷载流子,电子结构强烈取决于核和壳的大小。在此,展示了具有强烈可调的光学特性的Ge / Si核/壳QD的实验实现。通过简单的磁控溅射沉积法可将嵌入在无定形氧化铝玻璃基质中的量子点制成。另外,由于它们的自组装生长机制,它们被规则地排列在基质中。制作了具有不同Ge核和Si壳尺寸的QD。与纯Ge QD相比,这些核/壳结构具有明显强得多的吸收,并且取决于核和壳的大小,其吸收峰高度可调。光学性质与最近的理论预测一致,后者显示了壳尺寸对光学间隙的显着影响,导致壳厚度仅为0.4 nm时,蓝光偏移为0.7 eV,蓝移仅为0.7 nm。因此,这些材料在光收集应用中非常有前途。

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