English

Manipulating shear-induced non-equilibrium transitions by feedback control

Soft Condensed Matter 2014-11-05 v4

Abstract

Using Brownian Dynamics (BD) simulations we investigate non-equilibrium transitions of sheared colloidal films under controlled shear stress σxz\sigma_{\mathrm{xz}}. In our approach the shear rate γ˙\dot\gamma is a dynamical variable, which relaxes on a timescale τc\tau_c such that the instantaneous, configuration-dependent stress σxz(t)\sigma_{\mathrm{xz}}(t) approaches a pre-imposed value. Investigating the dynamics under this "feedback-control" scheme we find unique behavior in regions where the flow curve σxz(γ˙)\sigma_{\mathrm{xz}}(\dot\gamma) of the uncontrolled system is monotonic. However, in non-monotonic regions our method allows to {\em select} between dynamical states characterized by different in-plane structure and viscosities. Indeed, the final state strongly depends on τc\tau_c relative to an {\em intrinsic} relaxation time of the uncontrolled system. The critical values of τc\tau_c are estimated on the basis of a simple model.

Keywords

Cite

@article{arxiv.1403.6994,
  title  = {Manipulating shear-induced non-equilibrium transitions by feedback control},
  author = {Tarlan A. Vezirov and Sascha Gerloff and Sabine H. L. Klapp},
  journal= {arXiv preprint arXiv:1403.6994},
  year   = {2014}
}

Comments

9 pages, 9 figures

R2 v1 2026-06-22T03:35:54.426Z