English

Surface relaxation of lyotropic lamellar phases

Soft Condensed Matter 2007-05-23 v2 Fluid Dynamics

Abstract

We study the relaxation modes of an interface between a lyotropic lamellar phase and a gas or a simple liquid. The response is found to be qualitatively different from those of both simple liquids and single-component smectic-A liquid crystals. At low rates it is governed by a non-inertial, diffusive mode whose decay rate increases quadratically with wavenumber, ω=Aq2|\omega|=Aq^2. The coefficient AA depends on the restoring forces of surface tension, compressibility and bending, while the dissipation is dominated by the so-called slip mechanism, i.e, relative motion of the two components of the phase parallel to the lamellae. This surface mode has a large penetration depth which, for sterically stabilised phases, is of order (dq2)1(dq^2)^{-1}, where dd is the microscopic lamellar spacing.

Cite

@article{arxiv.cond-mat/0507447,
  title  = {Surface relaxation of lyotropic lamellar phases},
  author = {H. Bary-Soroker and H. Diamant},
  journal= {arXiv preprint arXiv:cond-mat/0507447},
  year   = {2007}
}

Comments

7 pages, 1 figure