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首页> 外文期刊>Journal of Physics. Condensed Matter >First-principles study of structural, electronic and optical properties of BaF2 in its cubic, orthorhombic and hexagonal phases
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First-principles study of structural, electronic and optical properties of BaF2 in its cubic, orthorhombic and hexagonal phases

机译:BaF2在立方,正交或六角相中的结构,电子和光学性质的第一性原理研究

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We present the results of a first-principles study on BaF2 in its stable (cubic) and high-pressure phases. A linear combination of atomic orbitals approach in the framework of density functional theory is employed for total energy calculations in cubic, orthorhombic and hexagonal phases of BaF2. A fitting of the energy surface to the equation of state yields the lattice constant and the bulk modulus of these phases at zero pressure which are in good agreement with the corresponding experimental values. Analysis of band structure determines the high-pressure phases to be direct-gap materials and no metallization of BaF2 is predicted to occur for pressures up to 50 GPa. Furthermore, several peaks observed in the spectroscopic experiments have been identified with interband transitions in the cubic BaF2. The calculated mean value of the refractive index is found to increase in going from the cubic to orthorhombic to hexagonal phases of BaF2. [References: 42]
机译:我们介绍了BaF2在其稳定(立方)和高压阶段的第一性原理研究的结果。在密度泛函理论的框架内,原子轨道方法的线性组合用于BaF2的立方,正交或六角形相的总能量计算。能量表面与状态方程的拟合产生了这些相在零压力下的晶格常数和体积模量,它们与相应的实验值非常吻合。带结构分析确定高压相为直接间隙材料,并且在压力高达50 GPa时,预计不会发生BaF2的金属化。此外,在光谱实验中观察到的几个峰已经鉴定为立方BaF2具有带间跃迁。发现从BaF 2的立方相到正交晶到六方相,折射率的计算平均值增加。 [参考:42]

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