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Structural, electronic, and optical properties of ZrO_2 from ab initio calculations

机译:从头算计算得出ZrO_2的结构,电子和光学性质

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摘要

Structural, electronic, and optical properties for the cubic, tetragonal, and monoclinic crystalline phases of ZrO_2, as derived from ab initio full-relativistic calculations, are presented. The electronic structure calculations were carried out by means of the all-electron full-potential linear augmented plane wave method, within the framework of the density functional theory and the local density approximation. The calculated carrier effective masses are shown to be highly anisotropic. The results obtained for the real and imaginary parts of the dielectric function, the reflectivity, and the refraction index show good agreement with the available experimental results. In order to obtain the static dielectric constant oT ZrO_2, we added to the electronic part the optical phonon contribution, which leads to values of ε_1 (0) approx= 29.5, 26.2, 21.9, respectively, along the xx, yy, and zz directions, for the monoclinic phase, in excellent accordance with experiment. Relativistic effects, including the spin-orbit interaction, are demonstrated to be important for a better evaluation of the effective mass values and in the detailed structure of the frequency dependent complex dielectric function.
机译:从头开始的全相对论计算得出了ZrO_2的立方,四方和单斜晶相的结构,电子和光学性质。电子结构的计算是在密度泛函理论和局部密度近似的框架下,通过全电子全势线性增强平面波方法进行的。计算出的载体有效质量显示出高度各向异性。对于介电函数的实部和虚部,反射率和折射率获得的结果与可用的实验结果显示出良好的一致性。为了获得静态介电常数oT ZrO_2,我们在电子部件中添加了光学声子贡献,这沿着xx,yy和zz方向分别导致ε_1(0)的值分别约为29.5、26.2、21.9。 ,对于单斜晶阶段,与实验非常吻合。相对论效应,包括自旋轨道相互作用,被证明对于更好地评估有效质量值和频率相关复介电函数的详细结构非常重要。

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