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首页> 外文期刊>The Journal of Chemical Physics >On the relation between the microscopic structure and the sound velocity anomaly in elemental melts of groups IV, V, and VI
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On the relation between the microscopic structure and the sound velocity anomaly in elemental melts of groups IV, V, and VI

机译:IV,V和VI组元素熔体的微观结构与声速异常之间的关系

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摘要

The sound velocity of some liquid elements of groups IV, V, and VI, as reported in the literature, displays anomalous features that set them apart from other liquid metals. In an effort to determine a possible common origin of these anomalies, extensive neutron diffraction measurements of liquid Bi and Sb were carried out over a wide temperature range. The structure factors of liquid Sb and Bi were determined as a function of temperature. The structure of the two molten metals was carefully analyzed with respect to peak locations, widths, and coordination numbers in their respective radial distribution function. The width of the peaks in the radial distribution functions was not found to increase and even decreased within a certain temperature range. This anomalous temperature dependence of the peak widths correlates with the anomalous temperature dependence of the sound velocity. This correlation may be accounted for by increased rigidity of the liquid structure with temperature. A phenomenological correlation between the peak width and the sound velocity is suggested for metallic melts and is found to agree with available data for normal and anomalous elemental liquids in groups IV-VI.
机译:如文献报道的,IV,V和VI组的某些液态元素的声速显示出异常特征,使它们与其他液态金属区分开。为了确定这些异常的可能共同起因,在较宽的温度范围内对液体Bi和Sb进行了广泛的中子衍射测量。确定了液体Sb和Bi的结构因子随温度的变化。仔细分析了两种熔融金属的结构,分别针对其径向分布函数中的峰位置,宽度和配位数。径向分布函数中的峰宽未发现在特定温度范围内增加甚至减少。峰宽的这种异常温度依赖性与声速的异常温度依赖性相关。这种相关性可以通过液体结构随温度增加的刚度来解释。建议在金属熔体的峰宽和声速之间存在一种现象学相关性,并且发现该现象与IV-VI组中正常和异常元素液体的可用数据相符。

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