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首页> 外文期刊>Journal of Physics. Condensed Matter >Raman and infrared vibrational frequencies and elastic properties of solid BaFCl calculated with various Hamiltonians: an ab initio study
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Raman and infrared vibrational frequencies and elastic properties of solid BaFCl calculated with various Hamiltonians: an ab initio study

机译:用各种哈密顿量计算的固体BaFCl的拉曼和红外振动频率以及弹性特性:从头算研究

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摘要

The structural, elastic, vibrational and electronic properties of barium fluorochloride (BaFCl) have been investigated for the first time at the ab initio level, by using the periodic CRYSTAL program. Both Hartree-Fock (HF) and density functional theory (DFT) Hamiltonians have been used. with the latter in its local density (LV), gradient-corrected (PP), and hybrid (B3LYP) versions. All properties, and in particular the phonon frequencies and the elastic constants, are strongly Hamiltonian dependent. The structural features are in reasonable agreement with experiment, the percentage deviation being smaller than 5%, in all cases. The B3LYP elastic constants are in good agreement with experiment, whereas LV systematically overestimates them. PP and B3LYP provide the best results for the vibrational frequencies. the mean percentage absolute difference with respect to experiment being 2.9 and 4.3% for Raman and 4.8 and 6.3%. for infrared mode frequencies. respectively.
机译:通过使用周期性CRYSTAL程序,从头开始对氟氯化钡(BaFCl)的结构,弹性,振动和电子性质进行了首次研究。 Hartree-Fock(HF)和密度泛函理论(DFT)哈密顿量均已使用。后者的局部密度(LV),梯度校正(PP)和混合(B3LYP)版本。所有性质,特别是声子频率和弹性常数,都强烈依赖于哈密顿量。在所有情况下,结构特征均与实验合理吻合,百分比偏差小于5%。 B3LYP弹性常数与实验非常吻合,而LV则系统地高估了它们。 PP和B3LYP可以为振动频率提供最佳结果。相对于实验的平均绝对差百分比,拉曼为2.9和4.3%,实验为4.8和6.3%。用于红外模式频率。分别。

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