非谐性
纤锌矿晶体结构
声子
拉曼光谱
凝聚态物理
格子(音乐)
从头算
重整化
材料科学
从头算量子化学方法
电子结构
物理
锌
量子力学
分子
冶金
声学
作者
Joaquim Rigola Serrano,A. H. Romero,F. J. Manjón,R. Lauck,M. Cardona,Ángel Rubio
标识
DOI:10.1103/physrevb.69.094306
摘要
We have performed first-principles calculations of the electronic structure of ZnO, and applied them to the determination of structural and lattice-dynamical properties and their dependence on pressure. The dynamical matrices have been obtained for the wurtzite, zinc-blende, and rocksalt modifications with several lattice parameters optimized for pressures up to 12 GPa. These matrices are employed to calculate the one-phonon densities of states (DOS) and the two-phonon DOS associated with either sums or differences of phonons. These results provide the essential tools to analyze the effect of isotope-induced mass disorder and anharmonicity on phonon linewidths, which we discuss here and compare with experimental data from Raman spectroscopy, including first- and second-order spectra. Agreement of calculated properties with experimental results improves considerably when the renormalization due to anharmonicity is subtracted from the experimental data.
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