Heuer Andreas
Institut für Physikalische Chemie, Westfälische Wilhelms-Universität Münster, D-48149 Münster, Corrensstraße 30, Germany.
J Phys Condens Matter. 2008 Sep 17;20(37):373101. doi: 10.1088/0953-8984/20/37/373101. Epub 2008 Aug 26.
In this review a systematic analysis of the potential energy landscape (PEL) of glass-forming systems is presented. Starting from the thermodynamics, the route towards the dynamics is elucidated. A key step in this endeavor is the concept of metabasins. The relevant energy scales of the PEL can be characterized. Based on the simulation results for some glass-forming systems one can formulate a relevant model system (ideal Gaussian glass-former) which can be treated analytically. The macroscopic transport can be related to the microscopic hopping processes, using either the strong relation between energy (thermodynamics) and waiting times (dynamics) or, alternatively, the concepts of the continuous-time random walk. The relation to the geometric properties of the PEL is stressed. The emergence of length scales within the PEL approach as well as the nature of finite-size effects is discussed. Furthermore, the PEL view is compared to other approaches describing the glass transition.
在本综述中,对玻璃形成系统的势能景观(PEL)进行了系统分析。从热力学出发,阐明了通向动力学的途径。这一努力中的关键步骤是亚稳态的概念。可以对PEL的相关能量尺度进行表征。基于一些玻璃形成系统的模拟结果,可以构建一个可进行解析处理的相关模型系统(理想高斯玻璃形成体)。利用能量(热力学)与等待时间(动力学)之间的强关系,或者连续时间随机游走的概念,可以将宏观输运与微观跳跃过程联系起来。强调了与PEL几何性质的关系。讨论了PEL方法中长度尺度的出现以及有限尺寸效应的性质。此外,还将PEL观点与描述玻璃转变的其他方法进行了比较。