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Characteristic energies and shifts in optical spectra of colloidal IV-VI semiconductor nanocrystals

机译:胶态IV-VI半导体纳米晶体的特征能和光谱位移

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摘要

We investigate structural, electronic, and optical properties of colloidal IV-VI semiconductor quantum dots (QDs) using an ab initio pseudopotential method and a repeated supercell approximation. In particular, rhombo-cuboctahedral quantum dots consisting of PbSe, PbTe, and SnTe with a pseudohydrogen passivation shell are investigated for different QD sizes. The obtained dependence of the confinement energy on the QD size questions the use of three-dimensional spherical potential well models for small QD structures. The predicted band gaps are almost in agreement with measured values. The calculated Franck-Condon shifts vary significantly with the QD size. Only for PbSe they may explain the Stokes shift between optical absorption and emission. For the tellurides, spectral properties such as the oscillator strength are more important.
机译:我们使用从头算pseudo势方法和重复的超级单元近似方法研究胶体IV-VI半导体量子点(QD)的结构,电子和光学性质。尤其是,针对不同的QD尺寸,研究了由PbSe,PbTe和SnTe构成的菱形-八面体量子点和假氢钝化壳。所获得的约束能量对QD尺寸的依赖性对用于小型QD结构的三维球形势阱模型的使用提出了质疑。预测的带隙几乎与测量值一致。计算得出的弗兰克-康登频移随QD大小而变化很大。仅对于PbSe,它们可以解释光吸收和发射之间的斯托克斯位移。对于碲化物,光谱特性(例如振荡器强度)更为重要。

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