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Single-chain dynamics in a semidilute polymer solution under steady shear

机译:稳定剪切作用下半稀释聚合物溶液中的单链动力学

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We use Brownian dynamics computer simulations to investigate single-chain dynamics in a semidilute polymer solution undergoing a steady, uniform shear flow. In the presence of the shear flow, the system used in the present study exhibits anisotropic structure factors, often referred to as butterfly patterns, which rotate with increasing shear rate [P. P. Jose and G. Szamel, J. Chem. Phys. 127, 114905 (2007)]. The rotation of these patterns correlates with shear thinning of the solution. In order to elucidate the microscopic origin of this behavior, we have investigated the change in the single-chain dynamics in the solution: We have focused on the relaxation of the end-to-end vector, the Rouse modes, and the radius of gyration tensor. In equilibrium and for small shear rates, these quantities show double exponential relaxation. With increasing shear rate, they show oscillatory relaxation, which hints at the tumbling motion of the chain. In the high shear rate regime, the frequency of the oscillations of the end-to-end vector autocorrelation function shows a power law dependence on the shear rate. We have compared the single-chain dynamics in the semidilute solution with that in a dilute solution. An analysis of the instantaneous values of the radius of gyration tensor, the end-to-end distance, and the normal stress along the system's trajectory reveals a synchronization of the fluctuations of these quantities. (C) 2008 American Institute of Physics.
机译:我们使用布朗动力学计算机仿真来研究在经历稳定,均匀剪切流的半稀释聚合物溶液中的单链动力学。在存在剪切流的情况下,本研究中使用的系统显示出各向异性的结构因数,通常称为蝶形,随着剪切率的增加而旋转[P。 P.Jose和G.Szamel,《化学杂志》物理127,114905(2007)]。这些图案的旋转与溶液的剪切稀化相关。为了阐明这种行为的微观原因,我们研究了溶液中单链动力学的变化:我们集中研究了端对端矢量的松弛,Rouse模式和回转半径。张量。在平衡状态下和小剪切速率下,这些量显示出双指数松弛。随着剪切速率的增加,它们显示出振荡松弛,这暗示了链条的翻滚运动。在高剪切速率状态下,端到端矢量自相关函数的振荡频率显示出幂率对剪切速率的依赖性。我们已经将半稀释溶液中的单链动力学与稀溶液中的单链动力学进行了比较。对沿系统轨迹的回转张量半径,端到端距离和法向应力的瞬时值的分析显示出这些量的波动是同步的。 (C)2008美国物理研究所。

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