Murarka Rajesh K, Bagchi Biman
Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore, India 560 012.
Phys Rev E Stat Nonlin Soft Matter Phys. 2003 May;67(5 Pt 1):051504. doi: 10.1103/PhysRevE.67.051504. Epub 2003 May 23.
We have carried out extensive molecular dynamics simulations of a supercooled polydisperse Lennard-Jones liquid with large variations in temperature at a fixed pressure. The particles in the system are considered to be polydisperse in both size and mass. The temperature dependence of dynamical properties such as the viscosity (eta) and the self-diffusion coefficients (D(i)) of different size particles is studied. Both viscosity and diffusion coefficients show super-Arrhenius temperature dependence and fit well to the well-known Vogel-Fulcher-Tammann equation. Within the temperature range investigated, the value of Angell's fragility parameter (D approximately 1.4) classifies the present system as a very fragile liquid. The critical temperature for diffusion (T(D(i))(o)) increases with the size of the particles. The critical temperature for viscosity (T(eta)(o)) is larger than that for diffusion, and sizable deviations appear for the smaller size particles, implying a decoupling of translational diffusion from viscosity in deeply supercooled liquids. Indeed, the diffusion shows markedly non-Stokesian behavior at low temperatures where a highly nonlinear dependence on size is observed. An inspection of the trajectories of the particles shows that at low temperatures the motions of both the smallest and largest size particles are discontinuous (jump type). However, the crossover from continuous Brownian to large length hopping motion takes place at shorter time scales for the smaller size particles.
我们在固定压力下对温度变化较大的过冷多分散 Lennard-Jones 液体进行了广泛的分子动力学模拟。系统中的粒子在大小和质量上均被视为多分散的。研究了不同大小粒子的动力学性质(如粘度(η)和自扩散系数(D(i)))对温度的依赖性。粘度和扩散系数均呈现出超阿累尼乌斯温度依赖性,并且与著名的 Vogel-Fulcher-Tammann 方程拟合良好。在所研究的温度范围内,安吉尔脆性参数的值(D 约为 1.4)将当前系统归类为非常脆弱的液体。扩散的临界温度(T(D(i))(o))随粒子大小的增加而升高。粘度的临界温度(T(η)(o))高于扩散的临界温度,并且对于较小尺寸的粒子出现了相当大的偏差,这意味着在深度过冷液体中平动扩散与粘度解耦。实际上,在低温下扩散表现出明显的非斯托克斯行为,此时观察到对大小的高度非线性依赖性。对粒子轨迹的检查表明,在低温下最小和最大尺寸粒子的运动都是不连续的(跳跃型)。然而,对于较小尺寸的粒子,从连续布朗运动到大幅度跳跃运动的转变发生在更短的时间尺度上。