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Vapor-Liquid (Insulator-Metal) Phase Transition in Alkali Metal Vapors

机译:碱金属蒸气中的蒸气-液体(绝缘体-金属)相变

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摘要

A simple physical model is proposed that describes a vapor-liquid phase transition in alkali metal vapors. The model is based on an assumption made on the character of binding between atoms in the gas phase near the critical point. This is the collective quantum cohesive energy, well-known in the theory of liquid alkali metals, which arises due to the appearance of conduction electrons and is extended to the gas region near the critical point. The parameters of the critical points of the transition and of the binodal are determined on the basis of the model calculation of the binding energy for all alkali metals. Combined, these parameters well agree with experimental results and the predictions made by other authors. The minimum metallic conductivity is evaluated. Its behavior allows one to conclude that vapor-liquid and insulator-metal transitions in alkali metal vapors coincide. This fact sheds light on the Zel'dovich-Landau problem as applied to alkali metal vapors.
机译:提出了一个简单的物理模型,该模型描述了碱金属蒸气中的汽-液相转变。该模型基于对临界点附近的气相中原子之间的结合特性进行的假设。这是液态碱金属理论中众所周知的集体量子内聚能,它是由于导电电子的出现而产生的,并延伸到临界点附近的气体区域。根据所有碱金属的结合能的模型计算,确定过渡和二倍体临界点的参数。综合起来,这些参数与实验结果和其他作者的预测非常吻合。评估了最小金属电导率。它的行为使我们可以得出这样的结论:碱金属蒸气中的气-液和绝缘体-金属转变是重合的。这一事实为Zel'dovich-Landau问题应用于碱金属蒸气提供了启示。

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