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Orbital free ab initio simulations of liquid alkaline earth metals: from pseudopotential construction to structural and dynamic properties

机译:液态碱土金属的无轨道从头算模拟:从拟势构造到结构和动力学特性

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We have performed a comprehensive study of the properties of liquid Be, Ca and Ba, through the use of orbital free ab initio simulations. To this end we have developed a force-matching method to construct the necessary local pseudopotentials from standard ab initio calculations. The structural magnitudes are analyzed, including the average and local structures and the dynamic properties are studied. We find several common features, like an asymmetric second peak in the structure factor, a large amount of local structures with five-fold symmetry, a quasi-universal behaviour of the single-particle dynamic properties and a large degree of positive dispersion in the propagation of collective density fluctuations, whose damping is dictated by slow thermal relaxations and fast viscoelastic ones. Some peculiarities in the dynamic properties are however observed, like a very high sound velocity and a large violation of the Stokes-Einstein relation for Be, or an extremely high positive dispersion and a large slope in the dispersion relation of shear waves at the onset of the wavevector region where they are supported for Ba.
机译:我们已经通过使用轨道自由从头计算对液体Be,Ca和Ba的性质进行了全面研究。为此,我们已经开发了一种力匹配方法,可以根据标准的从头算起计算来构造必要的局部伪势。分析了结构的大小,包括平均和局部结构,并研究了动态特性。我们发现了几个共同的特征,例如结构因子中的不对称第二峰,大量具有五重对称性的局部结构,单粒子动力学性质的准普遍行为以及传播中的正分散程度很大集体密度波动,其阻尼取决于缓慢的热松弛和快速的粘弹性。但是,观察到一些动态特性,例如很高的声速和Be的Stokes-Einstein关系的极大违反,或者在Be发生时剪切波的散射关系的正向色散和斜率非常高。 Ba支持的波矢区域。

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