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由缺陷线上的界面钉扎引起的二维伊辛模型中的一阶和三临界润湿转变。

First-order and tricritical wetting transitions in the two-dimensional Ising model caused by interfacial pinning at a defect line.

作者信息

Trobo Marta L, Albano Ezequiel V, Binder Kurt

机构信息

Instituto de Física de Líquidos y Sistemas Biológicos (IFLYSIB), CCT-CONICET La Plata, UNLP. Calle 59 Nro. 789, (1900) La Plata, Argentina and Facultad de Ingeniería, Universidad Nacional de La Plata, Argentina.

Instituto de Física de Líquidos y Sistemas Biológicos (IFLYSIB), CCT-CONICET La Plata, UNLP. Calle 59 Nro. 789, (1900) La Plata, Argentina and Facultad de Ciencias Exactas, Universidad Nacional de La Plata, Argentina.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Aug;90(2):022406. doi: 10.1103/PhysRevE.90.022406. Epub 2014 Aug 18.

Abstract

We present a study of the critical behavior of the Blume-Capel model with three spin states (S=±1,0) confined between parallel walls separated by a distance L where competitive surface magnetic fields act. By properly choosing the crystal field (D), which regulates the density of nonmagnetic species (S=0), such that those impurities are excluded from the bulk (where D=-∞) except in the middle of the sample [where D(M)(L/2)≠-∞], we are able to control the presence of a defect line in the middle of the sample and study its influence on the interface between domains of different spin orientations. So essentially we study an Ising model with a defect line but, unlike previous work where defect lines in Ising models were defined via weakened bonds, in the present case the defect line is due to mobile vacancies and hence involves additional entropy. In this way, by drawing phase diagrams, i.e., plots of the wetting critical temperature (T(w)) versus the magnitude of the crystal field at the middle of the sample (D(M)), we observe curves of (first-) second-order wetting transitions for (small) high values of D(M). Theses lines meet in tricritical wetting points, i.e., (T(w)(tc),D(M)(tc)), which also depend on the magnitude of the surface magnetic fields. It is found that second-order wetting transitions satisfy the scaling theory for short-range interactions, while first-order ones do not exhibit hysteresis, provided that small samples are used, since fluctuations wash out hysteretic effects. Since hysteresis is observed in large samples, we performed extensive thermodynamic integrations in order to accurately locate the first-order transition points, and a rather good agreement is found by comparing such results with those obtained just by observing the jump of the order parameter in small samples.

摘要

我们展示了一项关于具有三个自旋态(S = ±1, 0)的布卢姆 - 卡佩尔模型的临界行为的研究,该模型被限制在由距离L隔开的平行壁之间,且存在竞争表面磁场作用。通过适当选择调节非磁性物种(S = 0)密度的晶体场(D),使得除了样品中间部分[其中D(M)(L/2)≠ -∞]外,那些杂质被排除在主体(其中D = -∞)之外,我们能够控制样品中间缺陷线的存在,并研究其对不同自旋取向畴之间界面的影响。所以本质上我们研究的是一个带有缺陷线的伊辛模型,但与之前通过弱化键定义伊辛模型中缺陷线的工作不同,在当前情况下,缺陷线是由于可移动空位导致的,因此涉及额外的熵。通过这种方式,绘制相图,即绘制润湿临界温度(T(w))与样品中间晶体场大小(D(M))的关系图,我们观察到对于(小的)高D(M)值的(一阶 -)二阶润湿转变曲线。这些线在三临界润湿点,即(T(w)(tc), D(M)(tc))相交,这也取决于表面磁场的大小。结果发现,二阶润湿转变满足短程相互作用的标度理论,而一阶润湿转变在使用小样品时不表现出滞后现象,因为涨落会消除滞后效应。由于在大样品中观察到了滞后现象,我们进行了广泛的热力学积分以精确确定一阶转变点,并且通过将这些结果与仅通过观察小样品中序参量的跃变所获得的结果进行比较,发现了相当好的一致性。

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