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使用能量波动度量来诊断遍历性破坏

Diagnosing broken ergodicity using an energy fluctuation metric.

作者信息

de Souza Vanessa K, Wales David J

机构信息

University Chemical Laboratories, Lensfield Road, Cambridge CB2 1EW, United Kingdom.

出版信息

J Chem Phys. 2005 Oct 1;123(13):134504. doi: 10.1063/1.2035080.

Abstract

The Mountain and Thirumalai energy fluctuation metric, Omega(t), has been used to study the effective ergodicity of 60- and 256-atom binary Lennard-Jones mixtures in order to determine the reliability of the calculated diffusion constants at different energies. A plot of Omega(t) against 1time allows the identification of two distinct regimes: ergodic supercooled liquids, where Omega(t) approaches zero, and nonergodic glassy states, where Omega(t) asymptotically approaches a nonzero value on the molecular dynamics time scale. This approach seems to be more appropriate than attempting to define a threshold value for Omega(t)/Omega(0). The behavior of systems between these two limits, which are nonergodic on the time scale considered but may be approaching ergodicity, was examined for a range of simulation times. The calculated diffusion constants change as effective ergodicity is approached, moving closer to the Vogel-Tammann-Fulcher fit defined by higher-energy systems that are already considered to be effectively ergodic. Using the form of the decay of the metric as a measure of ergodicity, we have been able to reproduce the trend in fragility obtained by Sastry for a 256-atom system [Nature (London) 409, 164 (2001)], correcting some of our earlier results [J. Chem. Phys. 120, 8314 (2004)].

摘要

芒廷和蒂鲁马莱能量涨落度量Ω(t)已被用于研究60原子和256原子二元 Lennard-Jones 混合物的有效遍历性,以便确定不同能量下计算得到的扩散常数的可靠性。绘制Ω(t)与1/t的关系图可以识别出两种不同的状态:遍历性过冷液体,其中Ω(t)趋近于零;非遍历性玻璃态,其中Ω(t)在分子动力学时间尺度上渐近趋近于一个非零值。这种方法似乎比试图为Ω(t)/Ω(0)定义一个阈值更合适。对于一系列模拟时间,研究了这两个极限之间系统的行为,这些系统在所考虑的时间尺度上是非遍历性的,但可能正在趋近于遍历性。随着接近有效遍历性,计算得到的扩散常数会发生变化,更接近由已经被认为是有效遍历性的高能系统所定义的Vogel-Tammann-Fulcher拟合。利用该度量衰减的形式作为遍历性的一种度量,我们能够重现Sastry对一个256原子系统所得到的脆性趋势[《自然》(伦敦)409, 164 (2001)],并修正了我们早期的一些结果[《化学物理杂志》120, 8314 (2004)]。

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