声子
凝聚态物理
热膨胀
色散关系
各向异性
色散(光学)
布里渊区
材料科学
非弹性中子散射
拉曼散射
非弹性散射
声子散射
布里渊散射
拉曼光谱
弹性(物理)
中子散射
不稳定性
化学
正常模式
散射
相(物质)
热的
热稳定性
热力学
赝势
静水压力
作者
Mittal, R.,Gupta, M. K.,Singh Baltej,Pintschovius, L.,Zavartsev, Yu. D.,Chaplot, S. L.
标识
DOI:10.48550/arxiv.1902.08004
摘要
The orthovanadates are useful as host matrices for immobilization of radioactive wastes. The thermodynamic stability of these materials is crucial for their applications in high pressure and temperatures environment. It is necessary to investigate the phonons in the entire Brillouin zone, beyond the zone-centre phonons accessible in previous Raman and infrared experiments. We have carried out extensive neutron inelastic scattering experiments to derive the phonon dispersion relation of YVO4 up to high energy transfer of 65 meV using a single crystal, which are perhaps reported for the first time in any orthovanadate compound. The measured phonon dispersion relation is in good agreement with our first principles density functional theory as well as shell model calculations. The calculated pressure dependence of phonon modes in the zircon and scheelite phases shows unstable modes and violation of the Born stability criteria at high pressure, which may be lead to instability in YVO4 at high pressures. We also calculate large anisotropy in the thermal expansion behavior which arises from difference in anisotropic elasticity and mode Grüneisen parameters.
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