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Optical properties of alkaline-earth metal oxides from first principles

机译:第一性原理的碱土金属氧化物的光学性质

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This study reports the results of an ab initio electronic and optical calculation of alkaline-earth metal oxides (MgO, CaO, SrO and BaO) in the NaCl crystal structure using the full potential linearized augmented plane wave (FP-LAPW) method within the density functional theory. The exchange-corre-lation potential is treated by the generalized gradient approximation within the Perdew et al scheme. Moreover, the Engel-Vosko GGA formalism is applied so as to optimize the corresponding potential for band structure calculations. The real and imaginary parts of the dielectric function epsilon(omega), the optical absorption coefficient I(omgea), the reflectivity R(omgea) and the energy loss function are calculated by random phase approximation (RPA). The calculated results show a qualitative agreement with the available experimental results in the sense that we can recognize some peaks qualitatively, those due to single particle transitions. Furthermore the interband transitions responsible for the structures in the spectra are specified. It is shown that the oxygen 2p states and metal d states play the major role in optical transitions as initial and final states respectively. The effect of the spin-orbit coupling on the optical properties is also investigated and found to be quite small, especially in the low energy region. The dielectric constants are calculated and compared with the available theoretical and experimental results.
机译:这项研究报告了在密度范围内使用全电位线性化增强平面波(FP-LAPW)方法从头算电子和光学计算NaCl晶体结构中碱土金属氧化物(MgO,CaO,SrO和BaO)的结果功能理论。通过Perdew等人方案中的广义梯度近似来处理交换相关势。此外,应用了Engel-Vosko GGA形式主义来优化带结构计算的相应潜力。介电函数ε的实部和虚部,光学吸收系数I(omgea),反射率R(omgea)和能量损失函数通过随机相位近似(RPA)计算。从某种意义上说,我们可以定性地识别出某些峰,这些峰是由于单个颗粒的跃迁而计算出的,其结果与现有的实验结果吻合良好。此外,指定了负责光谱结构的带间跃迁。结果表明,氧2p态和金属d态分别在光学跃迁中起主要作用,并在最终转变中起主要作用。还研究了自旋轨道耦合对光学性能的影响,发现这种影响很小,尤其是在低能量区域。计算介电常数,并将其与可用的理论和实验结果进行比较。

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