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Glass and Jamming Transitions: From Exact Results to Finite-Dimensional Descriptions
Annual Review of Condensed Matter Physics ( IF 22.6 ) Pub Date : 2017-03-31 00:00:00 , DOI: 10.1146/annurev-conmatphys-031016-025334
Patrick Charbonneau 1 , Jorge Kurchan 2 , Giorgio Parisi 3 , Pierfrancesco Urbani 4 , Francesco Zamponi 5
Affiliation  

Despite decades of work, gaining a first-principles understanding of amorphous materials remains an extremely challenging problem. However, recent theoretical breakthroughs have led to the formulation of an exact solution of a microscopic glass-forming model in the mean-field limit of infinite spatial dimension. Numerical simulations have remarkably confirmed the dimensional robustness of some of the predictions. This review describes these latest advances. More specifically, we consider the dynamical and thermodynamic descriptions of hard spheres around the dynamical, Gardner, and jamming transitions. Comparing mean-field predictions with the finite-dimensional simulations, we identify robust aspects of the theory and uncover its more sensitive features. We conclude with a brief overview of ongoing research.

中文翻译:


玻璃和卡纸过渡:从准确的结果到有限尺寸的描述

尽管进行了数十年的工作,但对无定形材料的基本原理了解仍然是一个极具挑战性的问题。然而,近来的理论突破导致了在无限空间尺寸的平均场极限内形成微观玻璃形成模型的精确解。数值模拟已显着证实了某些预测的尺寸鲁棒性。这篇评论介绍了这些最新进展。更具体地说,我们考虑动力学,加德纳和干扰跃迁周围的硬球的动力学和热力学描述。将平均场预测与有限维模拟进行比较,我们确定了该理论的可靠方面,并揭示了其更敏感的特征。最后,我们对正在进行的研究进行了简要概述。

更新日期:2017-03-31
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