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Inelastic Neutron Scattering, Dynamics of Atoms and Novel Material Properties

机译:非弹性中子散射,原子动力学和新型材料特性

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We review our research on properties of two important functional materials in which dynamics plays an essential role, namely, fast-ion conductors and negative thermal expansion materials. We bring out the underlying role of the lattice dynamics in terms of the soft phonon modes in both cases. Then, using molecular dynamics simulation we show the mechanism of the fast-ion conduction that occurs at about 0.8 times the overall melting temperature in Li_(2)O, UO_(2) and ThO_(2). We obtain numerical measures of the phonon anharmonicity from neutron-inelastic experiments and also lattice dynamics computations and quantitatively derive the negative expansion coefficient in several crystalline materials that is found to match well with direct diffraction measurements.
机译:我们审查了我们对两个重要功能材料的性质的研究,其中动态发挥了基本作用,即快速离子导体和负热膨胀材料。在这两种情况下,我们在软校验模式方面发出了晶格动力学的潜在作用。然后,使用分子动力学模拟,我们显示出在Li_(2)O,UO_(2)和ThO_(2)中总熔化温度的约0.8倍的快速离子传导的机制。我们从中子 - 内弹性实验中获得了声子Anharmonicity的数值测量,并且晶格动力学计算并定量地导出了几种结晶材料中的负膨胀系数,该结晶材料与直接衍射测量相匹配。

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