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Influence of the aspect ratio and boundary conditions on universal finite-size scaling functions in the athermal metastable two-dimensional random field Ising model

机译:长宽比和边界条件对非热亚稳态二维随机场伊辛模型中通用有限尺寸尺度函数的影响

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摘要

This work studies universal finite size scaling functions for the number of one-dimensional spanning avalanches in a two-dimensional (2D) disordered system with boundary conditions of different nature and different aspect ratios. To this end, we will consider the 2D random field Ising model at T = 0 driven by the external field H with athermal dynamics implemented with periodic and forced boundary conditions. We have chosen a convenient scaling variable z that accounts for the deformation of the distance to the critical point caused by the aspect ratio. In addition, assuming that the dependence of the finite size scaling functions on the aspect ratio can be accounted for by an additional multiplicative factor, we have been able to collapse data for different system sizes, different aspect ratios, and different types of the boundary conditions into a single scaling function (Q) over cap.
机译:这项工作研究了具有不同性质和不同纵横比的边界条件的二维(2D)无序系统中一维跨越雪崩的数量的通用有限大小缩放函数。为此,我们将考虑由外部场H驱动的T = 0时的二维随机场Ising模型,该场具有以周期性和强迫边界条件实现的非热动力学。我们选择了一个方便的缩放变量z,该变量考虑了由纵横比引起的到临界点的距离的变形。另外,假设可以由一个附加的乘法因子来解释有限尺寸缩放函数对长宽比的依赖性,那么我们已经能够折叠不同系统大小,不同长宽比和不同类型边界条件的数据上限的单个缩放功能(Q)。

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