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Phase Transitions in a Continuum Curie-Weiss System: A Quantitative Analysis

机译:连续素威斯系统中的相变:定量分析

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Phase transitions in a continuum Curie-Weiss system of interacting particles are studied quantitatively. The interaction is determined by a division of the underlying space R~d into congruent cubic cells. For a region V c R~d consisting of N e IN cells, each two particles contained in V attract each other with intensity J_1/N. The particles contained in the same cell repel each other with intensity J_2> J1. For fixed values of the intensities J_1,J_2, the temperature and the chemical potential, the thermodynamic phase is defined as a probability measure on the space of occupation numbers of cells. There is shown that the half-plane J_1 × chemical potential contains phase coexistence points, and thus multiple thermodynamic phases of the system may exist at the same values of the temperature and chemical potential. The numerical calculations describing such phenomena are presented.
机译:定量地研究了连续的相互作用颗粒的连续寿命系统中的相变。相互作用由底层空间R〜D的划分决定成一致立方体细胞。对于由细胞中的N E组成的区域V C R〜D,V中包含的每种颗粒彼此吸引,具有强度J_1 / n。包含在同一单元中的颗粒彼此以强度J_2> J1互相排斥。对于强度J_1,J_2,温度和化学电位的固定值,热力学相位被定义为细胞占用空间的概率测量。示出了半平面J_1×化学电位包含相位共存点,因此系统的多个热力学相可以存在于温度和化学势的相同值中。提出了描述这种现象的数值计算。

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