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Analyzing the dynamic structure of liquid metals and alloys

机译:分析液态金属和合金的动态结构

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Experimental and numerical improvements have stimulated a great interest in the dynamic structure of liquids during the last decades. Many unexpected features have been unveiled among which fast sound, positive dispersion and possible coupling between transverse and longitudinal excitations can be mentioned. Models used to analyze these data have to be sound and more and more rigorous. In this study, we discuss the capability of a recently proposed fitting scheme (Wax J.-F. and Bryk T. J. Phys.: Condens. Matter 25 325104 (2013); 26 168002 (2014). Wax J.-F., Johnson M.R., and Bryk T. J. Phys.: Condens. Matter 28 185102 (2016).) to interpret these features of the dynamic structure of liquid metals and alloys.
机译:在过去的几十年中,实验和数值方面的改进引起了人们对液体动力学结构的极大兴趣。已经揭示了许多出乎意料的特征,其中可以提到快速声音,正色散以及横向和纵向激励之间可能的耦合。用于分析这些数据的模型必须健全且越来越严格。在这项研究中,我们讨论了最近提出的拟合方案的功能(Wax J.-F.和Bryk TJ Phys .: Condens。Matter 25 325104(2013); 26 168002(2014)。Wax J.-F.,Johnson MR和Bryk TJ Phys .: Condens。Matter 28 185102(2016)。)来解释液态金属和合金的动态结构的这些特征。

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