Annular electroconvection with shear
Abstract
We report experiments on convection driven by a radial electrical force in suspended annular smectic A liquid crystal films. In the absence of an externally imposed azimuthal shear, a stationary one-dimensional (1D) pattern consisting of symmetric vortex pairs is formed via a supercritical transition at the onset of convection. Shearing reduces the symmetries of the base state and produces a traveling 1D pattern whose basic periodic unit is a pair of asymmetric vortices. For a sufficiently large shear, the primary bifurcation changes from supercritical to subcritical. We describe measurements of the resulting hysteresis as a function of the shear at radius ratio . This simple pattern forming system has an unusual combination of symmetries and control parameters and should be amenable to quantitative theoretical analysis.
Cite
@article{arxiv.patt-sol/9710005,
title = {Annular electroconvection with shear},
author = {Zahir A. Daya and V. B. Deyirmenjian and Stephen W. Morris and John R. de Bruyn},
journal= {arXiv preprint arXiv:patt-sol/9710005},
year = {2009}
}
Comments
12 preprint pages, 3 figures in 2 parts each. For more info, see http://mobydick.physics.utoronto.ca