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首页> 外文期刊>Physical Review, B. Condensed Matter >Lattice dynamics calculations of the phonon spectra and thermodynamic properties of the aluminosilicate garnets pyrope, grossular, and spessartine M3Al2Si3O12 (M=Mg, Ca, and Mn) - art. no. 094302
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Lattice dynamics calculations of the phonon spectra and thermodynamic properties of the aluminosilicate garnets pyrope, grossular, and spessartine M3Al2Si3O12 (M=Mg, Ca, and Mn) - art. no. 094302

机译:硅铝酸盐石榴石,M3Al2Si3O12(M = Mg,Ca和Mn)的铝硅酸盐石榴石长焦,粗大和Spessartine的声子光谱和热力学性质的晶格动力学计算-艺术。没有。 094302

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摘要

This paper reports lattice dynamics calculations of various microscopic and macroscopic phonon properties of the aluminosilicate garnets pyrope, grossular, and spessartine (given by M3Al2Si3O12, where M=Mg, Ca, and Mn. respectively) using a transferable interatomic potential based on a shell model. These studies are fairly involved as these garnets have complex crystal structures with 80 atoms/primitive cell. The calculations have provided a theoretical understanding of the elastic constants, equation of state, phonon dispersion relations, and density of states of these materials. The computed density of states is used to derive various macroscopic thermodynamic quantities like the specific heat, thermal expansion, and mean-square atomic displacements. The computed phonon dispersion relations and total and partial densities of states have been particularly useful in interpreting the inelastic neutron-scattering data reported in the literature and the calculated results are found to be in good agreement with available experimental data. These studies have enabled a microscopic understanding of the variations in the phonon spectra of these materials and their manifestations in various macroscopic thermodynamic properties. [References: 62]
机译:本文报告了基于壳模型的可转移原子间电势,计算了铝硅酸盐石榴石长焦,粗大和司贝沙汀(分别由M3Al2Si3O12给出的M,Mg,Ca和Mn给出)的各种微观和宏观声子性质的晶格动力学计算。 。这些石榴石具有80个原子/原始细胞的复杂晶体结构,因此涉及很多研究。这些计算为这些材料的弹性常数,状态方程,声子色散关系和状态密度提供了理论上的理解。计算出的状态密度用于导出各种宏观热力学量,例如比热,热膨胀和均方原子位移。计算出的声子色散关系以及状态的总和部分密度在解释文献中报道的非弹性中子散射数据方面特别有用,并且发现计算结果与可用的实验数据非常吻合。这些研究使人们能够从微观上了解这些材料的声子谱的变化及其在各种宏观热力学性质中的表现。 [参考:62]

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