论文标题
以无序景观驱动的弹性接口的蠕变运动
Creep motion of elastic interfaces driven in a disordered landscape
论文作者
论文摘要
弹性界面在无序景观上弱驱动的热激活的蠕变运动是玻璃通用动力学的最佳例子之一。由于优雅的缩放论点,复杂的分析计算,有效的优化算法和创造性实验之间的富有成果的相互作用,它的理解在过去30年中发展了。在本文中,从先驱论点开始,我们回顾了导致蠕变制度当前物理情况的主要理论和实验结果。特别是,我们讨论了最近的著作,从基本激活事件角度揭示了这种超慢运动的集体性质。我们表明,这些事件控制着界面和群集的平均速度与“蠕变雪崩”的统计学相似,类似于在降低临界阈值下观察到的确定性雪崩。最近在具有磁性域壁的实验中观察到了激活事件的相关时空模式。预计新兴的物理图片与呈现热活化动力学的大型无序系统有关。
The thermally activated creep motion of an elastic interface weakly driven on a disordered landscape is one of the best examples of glassy universal dynamics. Its understanding has evolved over the last 30 years thanks to a fruitful interplay between elegant scaling arguments, sophisticated analytical calculations, efficient optimization algorithms and creative experiments. In this article, starting from the pioneer arguments, we review the main theoretical and experimental results that lead to the current physical picture of the creep regime. In particular, we discuss recent works unveiling the collective nature of such ultra-slow motion in terms of elementary activated events. We show that these events control the mean velocity of the interface and cluster into "creep avalanches" statistically similar to the deterministic avalanches observed at the depinning critical threshold. The associated spatio-temporal patterns of activated events have been recently observed in experiments with magnetic domain walls. The emergent physical picture is expected to be relevant for a large family of disordered systems presenting thermally activated dynamics.