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Calculation of anharmonic OH phonon dispersion curves for the Mg (OH)2 crystal

机译:Mg(OH)2晶体的非谐OH声子色散曲线的计算

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Anharmonic OH phonon dispersion curves have been calculated for the Mg (OH) 2 crystal. A crystal Hamiltonian was set up for the vibrational problem, where the coordinates consists of the bond lengths of two hydroxide ions in the central unit cell. Its two-dimensional potential energy surface was constructed from first principle calculations within the density functional theory approximation. Dispersion curves were calculated by diagonalizing the Hamiltonian in a basis of singly excited crystal functions. The single particle functions used to construct the crystal states were taken from a Morse oscillator basis set. These well chosen functions made it possible to restrict calculations to include only very few functions, which greatly contributed to a transparent presentation of the underlying theory. All calculations could be done analytically except for the calculation of a few integrals. We have compared our results with those of a series of harmonic lattice dynamics calculations and have found that the anharmonicity shifts the IR and Raman dispersion curves downward appreciably and slightly changes the energy differences between both curves. From an analysis of the harmonic results we conclude that incorporating the coupling between OH stretching motion and the motion of their centers of mass will appreciably change the overall features of the dispersion curves. Extension of the anharmonic model along these lines will cause no problem to the theoretical approach presented in this paper.
机译:已计算出Mg(OH)2晶体的非谐OH声子色散曲线。为振动问题建立了晶体哈密顿量,其坐标由中央晶胞中两个氢氧根离子的键长组成。它的二维势能面是根据密度泛函理论近似中的第一性原理计算构建的。通过在单激发晶体函数的基础上对角化哈密顿量来计算色散曲线。用于构造晶态的单个粒子函数取自莫尔斯振荡器的基础集合。这些精心选择的函数使将计算限制为仅包含很少的函数成为可能,这极大地促进了基础理论的透明表示。除了一些积分的计算之外,所有计算都可以解析地完成。我们将我们的结果与一系列谐波晶格动力学计算的结果进行了比较,发现非谐性使IR和拉曼色散曲线明显下降,并且略微改变了两条曲线之间的能量差。通过对谐波结果的分析,我们得出结论,将OH拉伸运动与其质心运动结合起来,将会明显改变色散曲线的总体特征。沿着这些路线扩展非谐模型不会对本文提出的理论方法造成任何问题。

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