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首页> 外文期刊>International journal for simulation and multidisciplinary design optimization >Electronic band structure, optical, dynamical and thermodynamic properties of cesium chloride (CsCl) from first-principles
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Electronic band structure, optical, dynamical and thermodynamic properties of cesium chloride (CsCl) from first-principles

机译:第一性原理氯化铯(CsCl)的电子能带结构,光学,动力学和热力学性质

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The geometric structural optimization, electronic band structure, total density of states for valence electrons, density of states for phonons, optical, dynamical, and thermodynamical features of cesium chloride have been investigated by linearized augmented plane wave method using the density functional theory under the generalized gradient approximation. Ground state properties of cesium chloride are studied. The calculated ground state properties are consistent with experimental results. Calculated band structure indicates that the cesium chloride structure has an indirect band gap value of 5.46?eV and is an insulator. From the obtained phonon spectra, the cesium chloride structure is dynamically stable along the various directions in the Brillouin zone. Temperature dependent thermodynamic properties are studied using the harmonic approximation model.
机译:在线性化的基础上,采用密度泛函理论,通过线性化增强平面波方法研究了氯化铯的几何结构优化,电子能带结构,价电子态总密度,声子态密度,光学,动力学和热力学特征。梯度近似。研究了氯化铯的基态性质。计算出的基态性质与实验结果一致。计算出的能带结构表明氯化铯结构的间接带隙值为5.46?eV,是绝缘体。根据获得的声子光谱,氯化铯结构沿布里渊区中的各个方向动态稳定。使用谐波近似模型研究与温度有关的热力学性质。

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