Emergent order in rheoscopic swirls
Abstract
We discuss the reflection of light by a rheoscopic fluid (a suspension of microscopic rod-like crystals) in a steady two-dimensional flow. This is determined by an order parameter which is a non-oriented vector, obtained by averaging solutions of a nonlinear equation containing the strain rate of the fluid flow. Exact solutions of this equation are obtained from solutions of a linear equation which are analogous to Bloch bands for a one-dimensional Schrodinger equation with a periodic potential. On some contours of the stream function, the order parameter approaches a limit, and on others it depends increasingly sensitively upon position. However, in the long-time limit a local average of the order parameter is a smooth function of position in both cases. We analyse the topology of the order parameter and the structure of the generic zeros of the order parameter field.
Keywords
Cite
@article{arxiv.0910.5330,
title = {Emergent order in rheoscopic swirls},
author = {Michael Wilkinson and Vlad Bezuglyy and Bernhard Mehlig},
journal= {arXiv preprint arXiv:0910.5330},
year = {2012}
}
Comments
28 pages, 13 figures