English

Dynamical heterogeneity in soft particle suspensions under shear

Soft Condensed Matter 2015-03-19 v1

Abstract

We present experimental measurements of dynamical heterogeneities in a dense system of microgel spheres, sheared at different rates and at different packing fractions in a microfluidic channel, and visualized with high speed digital video microscopy. A four-point dynamic susceptibility is deduced from video correlations, and is found to exhibit a peak that grows in height and shifts to longer times as the jamming transition is approached from two different directions. In particular, the time for particle-size root-mean square relative displacements is found to scale as τ(γ˙Δϕ4)1\tau^* \sim (\dot \gamma \Delta \phi^4)^{-1} where γ˙\dot\gamma is the strain rate and Δϕ=ϕϕc\Delta\phi=|\phi-\phi_c| is the distance from the random close packing volume fraction. The typical number of particles in a dynamical heterogeneity is deduced from the susceptibility peak height and found to scale as n(γ˙Δϕ4)0.3n^* \sim (\dot \gamma \Delta \phi^4)^{-0.3}. Exponent uncertainties are less than ten percent. We emphasize that the same power-law behavior is found at packing fractions above and below ϕc\phi_c. Thus, our results considerably extend a previous observation of nγ˙0.3n^* \sim \dot\gamma^{-0.3} for granular heap flow at fixed packing below ϕc\phi_c. Furthermore, the implied result n(τ)0.3n^*\sim (\tau^*)^{0.3} compares well with expectation from mode-coupling theory and with prior observations for driven granular systems.

Keywords

Cite

@article{arxiv.1103.2357,
  title  = {Dynamical heterogeneity in soft particle suspensions under shear},
  author = {K. N. Nordstrom and J. P. Gollub and D. J. Durian},
  journal= {arXiv preprint arXiv:1103.2357},
  year   = {2015}
}
R2 v1 2026-06-21T17:38:31.128Z