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Nonequilibrium dynamics of the three-dimensional Edwards-Anderson spin-glass model with Gaussian couplings: strong heterogeneities and the backbone picture

机译:具有高斯耦合的三维Edwards-Anderson自旋玻璃模型的非平衡动力学:强异质性和主干图

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摘要

We numerically study the three-dimensional Edwards-Anderson model with Gaussian couplings, focusing on the heterogeneities arising in its nonequilibrium dynamics. Results are analyzed in terms of the backbone picture, which links strong dynamical heterogeneities to spatial heterogeneities emerging from the correlation of local rigidity of the bond network. Different two-times quantities as the flipping time distribution and the correlation and response functions, are evaluated over the full system and over high-and low-rigidity regions. We find that the nonequilibrium dynamics of the model is highly correlated to spatial heterogeneities. Also, we observe a similar physical behavior to that previously found in the Edwards-Anderson model with a bimodal (discrete) bond distribution. Namely, the backbone behaves as the main structure that supports the spin-glass phase, within which a sort of domain-growth process develops, while the complement remains in a paramagnetic phase, even below the critical temperature.
机译:我们对具有高斯耦合的三维Edwards-Anderson模型进行了数值研究,重点研究了其非平衡动力学中产生的异质性。根据主干图分析结果,这些主图将强大的动态异质性与从键合网络的局部刚度的相关性出现的空间异质性联系起来。在整个系统以及高刚性和低刚性区域中,将评估两次不同的二次量,如翻转时间分布以及相关和响应函数。我们发现模型的非平衡动力学与空间异质性高度相关。此外,我们观察到与以前在Edwards-Anderson模型中发现的具有双峰(离散)键分布的相似的物理行为。即,骨架充当支撑自旋玻璃相的主要结构,自旋玻璃相在其中发展出一种畴生长过程,而补体甚至在临界温度以下仍处于顺磁相。

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