论文标题

流体中驱动依赖性摩擦的分子起源

Molecular origin of driving-dependent friction in fluids

论文作者

Post, Matthias, Wolf, Steffen, Stock, Gerhard

论文摘要

流体的摩擦系数可能会成为增加外部驾驶时速度的函数。这种非牛顿行为具有一般的理论利益,并且具有很大的重要性,例如对于润滑剂的设计。虽然在大规模液体的大规模原子模拟中观察到了这种效果,但其理论配方和显微镜起源尚不清楚。在这里,我们使用经耗散校正的靶向分子动力学,在周围分子存在下,它可以将两个标记的液体分子拉开,并通过广义的langevin方程分析这种非平衡过程。该方法基于Jarzynski身份的二阶累积膨胀,该标志被证明对流体有效,因此允许精确计算摩擦轮廓以及基础内存内核。我们表明,流体中的速度依赖性摩擦是由于近阶结构效应的复杂相互作用和摩擦记忆内核的非马克维亚行为而引起的。对于复杂的流体,例如模型润滑剂\烷烃,内存内核表现出伸展的指数长期衰减,这反映了系统的多个时间尺度。

The friction coefficient of fluids may become a function of the velocity at increased external driving. This non-Newtonian behavior is of general theoretical interest as well as of great practical importance, e.g., for the design of lubricants. While the effect has been observed in large-scale atomistic simulations of bulk liquids, its theoretical formulation and microscopic origin is not well understood. Here we use dissipation-corrected targeted molecular dynamics, which pulls apart two tagged liquid molecules in the presence of surrounding molecules and analyzes this nonequilibrium process via a generalized Langevin equation. The approach is based on a second-order cumulant expansion of Jarzynski's identity, which is shown to be valid for fluids and therefore allows for an exact computation of the friction profile as well of the underlying memory kernel. We show that velocity-dependent friction in fluids results from an intricate interplay of near-order structural effects and the non-Markovian behavior of the friction memory kernel. For complex fluids such as the model lubricant \alkane, the memory kernel exhibits a stretched-exponential long-time decay, which reflects the multitude of timescales of the system.

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