paper

Shear-stress fluctuations and relaxation in polymer glasses

arXiv:1711.00725 · doi:10.1103/PhysRevE.97.012502

Abstract

We investigate by means of molecular dynamics simulation a coarse-grained polymer glass model focusing on (quasi-static and dynamical) shear-stress fluctuations as a function of temperature T and sampling time . The linear response is characterized using (ensemble-averaged) expectation values of the contributions (time-averaged for each shear plane) to the stress-fluctuation relation for the shear modulus and the shear-stress relaxation modulus . Using 100 independent configurations we pay attention to the respective standard deviations. While the ensemble-averaged modulus decreases continuously with increasing T for all sampled, its standard deviation is non-monotonous with a striking peak at the glass transition. The question of whether the shear modulus is continuous or has a jump-singularity at the glass transition is thus ill-posed. Confirming the effective time-translational invariance of our systems, the -dependence of and related quantities can be understood using a weighted integral over . This implies that the shear viscosity may be readily obtained from the -decay of above the glass transition.

21 pages, 21 figures, submitted to PRE