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Theory of the Condensation Point

机译:凝点理论

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This paper is a report of some studies leading to a new mathematical description of the condensation point for a simple class of models of first-order phase transitions. The paper consists of three main parts. In the first part it is pointed out that, although the conventional droplet model of condensation predicts that the free energy has an essential singularity at the condensation point, this singularity is so weak as to be experimentally unobservable. Furthermore the analytic continuation of the free energy beyond the singularity describes a metastable phase according to the assumptions of the model. The second part of the paper is devoted to the study of a soluble functional integral that exhibits an essential singularity similar to that found in the droplet model. A method is developed for computing the singular properties of such integrals in cases where it is not possible to evaluate the integrals exactly. In the third part of the paper this method is applied to a simple model of a ferromagnet at temperatures well below the Curie point. Most of the really characteristic features of the droplet model are recovered in this calculation. The detailed results have a bearing on problems of phase coexistence, surface energies, and possibly even condensation rates.
机译:本文是一些研究的报告,这些研究为一类简单的一阶相变模型提供了新的缩合点数学描述。本文包括三个主要部分。在第一部分中指出,尽管常规的液滴凝结模型预测自由能在凝结点具有基本的奇异性,但这种奇异性如此微弱以至于在实验中无法观察到。此外,根据模型的假设,超出奇异性的自由能的解析连续性描述了一个亚稳态阶段。本文的第二部分专门研究可溶性功能积分,该积分表现出与液滴模型相似的本质奇异性。在无法精确评估积分的情况下,开发了一种用于计算此类积分的奇异性质的方法。在论文的第三部分中,该方法被应用于温度远低于居里点的铁磁体的简单模型。在此计算中可以恢复液滴模型的大多数真正特征。详细的结果与相共存,表面能甚至可能的凝结率有关。

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