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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Nonequilibrium evolution of window overlaps in spin glasses
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Nonequilibrium evolution of window overlaps in spin glasses

机译:旋转玻璃中窗口重叠的非平衡演化

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We investigate numerically the time dependence of "window" overlaps in a three-dimensional Ising spin glass below its transition temperature after a rapid quench. Using an efficient GPU implementation, we are able to study large systems up to lateral length L = 128 and up to long times of t = 10~8 sweeps. We find that the data scales according to the ratio of the window size W to the nonequilibrium coherence length ξ(t). We also show a substantial change in behavior if the system is run for long enough that it globally equilibrates, i.e., ξ(t) ≈ L/2, where L is the lattice size. This indicates that the local behavior of a spin glass depends on the spin configurations (and presumably also the bonds) far away. We compare with similar simulations for the Ising ferromagnet. Based on these results, we speculate on a connection between the nonequilibrium dynamics discussed here and averages computed theoretically using the "metastate."
机译:我们在数值上研究了快速淬火后低于其转变温度的三维伊辛旋转玻璃中“窗口”重叠的时间依赖性。使用高效的GPU实现,我们能够研究横向长度L = 128以及t = 10〜8扫描的长时间的大型系统。我们发现数据是根据窗口大小W与非平衡相干长度ξ(t)的比值缩放的。如果系统运行足够长的时间以使系统全局平衡,即ξ(t)≈L / 2,其中L为晶格大小,我们还将显示出行为上的重大变化。这表明自旋玻璃的局部行为取决于相距很远的自旋构型(大概也取决于键)。我们将与Ising铁磁体的类似仿真进行比较。根据这些结果,我们推测这里讨论的非平衡动力学与理论上使用“元态”计算的平均值之间的联系。

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