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Vitrification in a 2D Ising model with mobile bounds

机译:具有移动边界的2D Ising模型中的玻璃化

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A bond-disordered two-dimensional Ising model is used to simulate Kauzmann's mechanism of vitrification in liquids, by a Glauber Monte Carlo simulation. The rearrangement of configurations is achieved by allowing impurity bonds to hop to nearest neighbors at the same rate as the spins flip. For slow cooling, the theoretical minimum energy configuration is approached, characterized by an amorphons distribution of locally optimally arranged impurity bounds. Rapid cooling to low temperatures regularly finds bond configurations of higher energy, which are both a priori rare and severely restrictive to spin movement, providing a simple realization of kinetic vitrification. A supercooled liquid regime is also found, and characterized by a change in sign of the field derivative of the spin-glass susceptibility at a finite temperature.
机译:通过Glauber Monte Carlo模拟,使用了无序键二维二维Ising模型来模拟Kauzmann在液体中的玻璃化机理。通过允许杂质键以自旋翻转的相同速率跳至最近的邻居,从而实现构型的重排。对于慢速冷却,采用理论上的最小能量配置,其特征在于局部最优排列的杂质边界的非晶子分布。快速冷却至低温通常会发现具有较高能量的键构型,这既是先验稀有的,也是自旋运动的严格限制,从而提供了动态玻璃化的简单实现。还发现了过冷的液体状态,其特征在于在有限的温度下自旋玻璃磁化率的场导数的符号改变。

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