论文标题

热结中的杂质效应

Impurity effects in thermal regelation

论文作者

Marath, Navaneeth K., Wettlaufer, John S.

论文摘要

当将粒子放置在体积较低的熔化温度的材料中时,分子间力会导致存在较低的熔化温度材料的预先液体膜。尽管系统低于两种固体的熔融温度,但液体膜是热力学平衡的结果,由分子间,离子和其他相互作用控制。施加的温度梯度通过称为热燃料的熔化和重新冻结的过程来驱动粒子的翻译。我们计算出含有离子杂质的预先膜所包围的球形颗粒的再现速率。杂质提高了运动速率,从而影响了单个粒子的动力学和颗粒的分布,除了自然和技术环境中的后果外,我们还描述了这些动力。

When a particle is placed in a material with a lower bulk melting temperature, intermolecular forces can lead to the existence of a premelted liquid film of the lower melting temperature material. Despite the system being below the melting temperatures of both solids, the liquid film is a consequence of thermodynamic equilibrium, controlled by intermolecular, ionic and other interactions. An imposed temperature gradient drives the translation of the particle by a process of melting and refreezing known as thermal regelation. We calculate the rate of regelation of spherical particles surrounded by premelted films that contain ionic impurities. The impurities enhance the rate of motion thereby influencing the dynamics of single particles and distributions of particles, which we describe in addition to the consequences in natural and technological settings.

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