过冷
玻璃化转变
动力学(音乐)
统计物理学
软物质
微观理论
简单(哲学)
分子动力学
航程(航空)
化学物理
物理
材料科学
凝聚态物理
热力学
化学
物理化学
量子力学
复合材料
哲学
核磁共振
胶体
聚合物
认识论
声学
作者
Liesbeth M. C. Janssen,David R. Reichman
标识
DOI:10.1103/physrevlett.115.205701
摘要
The transition from a liquid to a glass remains one of the most poorly understood phenomena in condensed matter physics, and still no fully microscopic theory exists that can describe the dynamics of supercooled liquids in a quantitative manner over all relevant time scales. Here, we present a theoretical framework that yields near-quantitative accuracy for the time-dependent correlation functions of a glass-forming system over a broad density range. Our approach requires only simple static structural information as input and is based entirely on first principles. Owing to its ab initio nature, the framework offers a unique platform to study the relation between structure and dynamics in glass-forming matter, and paves the way towards a systematically correctable and ultimately fully quantitative theory of microscopic glassy dynamics.
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