English

Shear modulus and shear-stress fluctuations in polymer glasses

Soft Condensed Matter 2017-11-03 v1

Abstract

Using molecular dynamics simulation of a standard coarse-grained polymer glass model we investigate by means of the stress-fluctuation formalism the shear modulus μ\mu as a function of temperature TT and sampling time Δt\Delta t. While the ensemble-averaged modulus μ(T)\mu(T) is found to decrease continuously for all Δt\Delta t sampled, its standard deviation δμ(T)\delta \mu(T) is non-monotonous with a striking peak at the glass transition. Confirming the effective time-translational invariance of our systems, μ(Δt)\mu(\Delta t) can be understood using a weighted integral over the shear-stress relaxation modulus G(t)G(t). While the crossover of μ(T)\mu(T) gets sharper with increasing Δt\Delta t, the peak of δμ(T)\delta \mu(T) becomes more singular. % It is thus elusive to predict the modulus of a single configuration at the glass transition.

Keywords

Cite

@article{arxiv.1711.00736,
  title  = {Shear modulus and shear-stress fluctuations in polymer glasses},
  author = {I. Kriuchevskyi and J. P. Wittmer and H. Meyer and J. Baschnagel},
  journal= {arXiv preprint arXiv:1711.00736},
  year   = {2017}
}

Comments

5 pages, 6 figure, published at PRL

R2 v1 2026-06-22T22:34:01.880Z