English

Dynamics of Highly Supercooled Liquids

Soft Condensed Matter 2009-10-31 v1

Abstract

The diffusivity of tagged particles is demonstrated to be heterogeneous on time scales comparable to or less than the structural relaxation time %taking place at the interparticle distance in a highly supercooled liquid via 3D molecular dynamics simulation. The particle motions in the relatively active regions dominantly contribute to the mean square displacement, giving rise to a diffusion constant systematically larger than the Stokes-Einstein value. The van Hove self-correlation function Gs(r,t)G_s(r,t) is shown to have a large rr tail which can be scaled in terms of r/t1/2r/t^{1/2} for t\ls3ταt \ls 3 \tau_\alpha, where τα\tau_\alpha \cong the stress relaxation time. Its presence indicates heterogeneous diffusion in the active regions. However, the diffusion process eventually becomes homogeneous on time scales longer than the life time of the heterogeneity structure (3τα\sim 3 \tau_{\alpha}).

Keywords

Cite

@article{arxiv.cond-mat/9811002,
  title  = {Dynamics of Highly Supercooled Liquids},
  author = {Ryoichi Yamamoto and Akira Onuki},
  journal= {arXiv preprint arXiv:cond-mat/9811002},
  year   = {2009}
}

Comments

8pages, 6 figures (Proceeding of the 8th Tohwa University International Symposium on "Slow Dynamics in Complex Systems" Nov. 9-14, 1998, Fukuoka)