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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Slow dynamics at the smeared phase transition of randomly layered magnets
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Slow dynamics at the smeared phase transition of randomly layered magnets

机译:随机分层磁体涂片相变时的慢动力学

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摘要

We investigate a model for randomly layered magnets, viz., a three-dimensional Ising model with planar defects. The magnetic phase transition in this system is smeared because static long-range order can develop on isolated rare spatial regions. Here, we report large-scale kinetic Monte Carlo simulations of the dynamical behavior close to the smeared phase transition, which we characterize by the spin (time) autocorrelation function. In the paramagnetic phase, its behavior is dominated by Griffiths effects similar to those in magnets with point defects. In the tail region of the smeared transition the dynamics is even slower: the autocorrelation function decays like a stretched exponential at intermediate times before approaching the exponentially small asymptotic value following a power law at late times. Our Monte Carlo results are in good agreement with recent theoretical predictions based on optimal fluctuation theory.
机译:我们研究了随机分层磁体的模型,即具有平面缺陷的三维伊辛模型。该系统中的磁相变被涂抹了,因为静态的远程有序可能会在孤立的稀有空间区域上形成。在这里,我们报告了接近涂污相变的动力学行为的大规模动力学蒙特卡罗模拟,我们用自旋(时间)自相关函数来表征。在顺磁阶段,其行为受格里菲斯效应的支配,类似于具有点缺陷的磁体中的格里菲斯效应。在拖尾过渡的尾部区域,动力学甚至更慢:自相关函数在中间时间像拉伸的指数一样衰减,然后在后期根据幂定律接近指数较小的渐近值。我们的蒙特卡洛结果与基于最优波动理论的最新理论预测非常吻合。

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