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Computing analysis of lattice vibrations of ice VIII

机译:冰VIII晶格振动的计算分析

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The differences in the vibrational spectra of a condensed matter between inelastic neutron scattering and photon scattering originate from the different corresponding interaction mechanisms. However, investigators used to ignore them due to difficulties to analyse theoretically. Herein, we devise an approach to link neutron scattering with photon scattering experiments by computing simulation methods and shed light on new physical insights for the assignments of crystalline materials. By using the first-principles method based on density functional theory (DFT), the vibrational spectrum of ice VIII is investigated. Comparisons between the computing vibration modes and the experimental data of ice VIII, i.e., Raman and neutron scattering data, mutually validate the reliability. The assignments of the dynamic process of 33 normal modes at the Brillouin zone (BZ) center are precisely illustrated from the vibrational analysis based on CASTEP code. The physical insights for special vibration modes are discussed individually as well as in terms of the correlated peak from neutron and Raman scattering.
机译:非弹性中子散射和光子散射之间的凝聚物振动光谱的差异是由不同的相应相互作用机理引起的。然而,由于难以进行理论分析,调查人员过去常常忽略它们。本文中,我们设计了一种通过计算模拟方法将中子散射与光子散射实验联系起来的方法,并为晶体材料的分配提供了新的物理见解。通过基于密度泛函理论(DFT)的第一原理方法,研究了冰VIII的振动谱。冰VIII, i.e。,拉曼和中子散射数据的计算振动模式与实验数据之间的比较相互验证了可靠性。通过基于CASTEP代码的振动分析,可以精确地说明布里渊区(BZ)中心的33个正常模式的动态过程分配。分别讨论了特殊振动模式的物理见解以及中子和拉曼散射的相关峰。

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