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首页> 外文期刊>Journal of Physics. Condensed Matter >Theoretical approach to embed nanocrystallites into a bulk crystalline matrix and the embedding influence on the electronic band structure and optical properties of the resulting heterostructures
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Theoretical approach to embed nanocrystallites into a bulk crystalline matrix and the embedding influence on the electronic band structure and optical properties of the resulting heterostructures

机译:将纳米晶体嵌入块状晶体基质中的理论方法及对所得异质结构的电子带结构和光学性质的嵌入对影响

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摘要

We develop an approach and present results of the combined molecular dynamics and density functional theory calculations of the structural and optical properties of the nanometer-sized crystallites embedded in a bulk crystalline matrix. The method is designed and implemented for both compatible and incompatible lattices of the nanocrystallite (NC) and the host matrix, when determining the NC optimal orientation relative to the matrix constitutes a challenging problem. We suggest and substantiate an expression for the cost function of the search algorithm, which is the energy per supercell generalized for varying number of atoms in the latter. The epitaxial relationships at the Si/NC interfaces and the optical properties are obtained and found to be in a reasonable agreement with experimental data. Dielectric functions show significant sensitivity to the NC's orientation relative to the matrix at energies below 0.5eV.
机译:我们开发一种方法和存在于组合在块状晶体基质中嵌入的纳米尺寸微晶的结构和光学性质的组合分子动力学和密度函数理论计算的方法。 当确定相对于矩阵的NC最佳取向时,该方法被设计和不相容的纳米晶体(NC)和主体矩阵的格子设计和实施。 我们建议并证实了搜索算法的成本函数的表达,这是每个超级细胞的能量,用于在后者中变化数量的原子。 获得Si / NC接口和光学性质的外延关系,发现与实验数据合理的协议。 电介质功能对NC的矩阵相对于矩阵的介电功能显着敏感,在0.5EV的能量下。

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