
Article
Light-induced Self-synchronizing Flow Patterns
New Journal of Physics
(2010)
Abstract
In this paper, we present the observation of light-induced self-synchronizing flow patterns in a light–fluid system. A light beam induces local flow patterns in a fluid, which oscillate periodically or chaotically in time. The oscillations within different regions of the fluid interact with each other through heat- and surface-tension-induced fluid waves, and they become synchronized. We demonstrate optical control over the state of synchronization and over the temporal correlation between different parts of the flow field. Finally, we provide a model to elucidate these results and we suggest further ideas on light controlling flow and vice versa.
Disciplines
Publication Date
May 13, 2010
Publisher Statement
© IOP Publishing Ltd and Deutsche Physikalische Gesellschaft. Deposited here in compliance with publisher policies. Publisher's version of record: http://dx.doi.org/10.1088/1367-2630/13/5/053021
Citation Information
Elad Greenfield, Carmel Rotschild, Alexander Szameit, Jonathan Nemirovsky, et al.. "Light-induced Self-synchronizing Flow Patterns" New Journal of Physics Vol. 13 (2010) Available at: http://works.bepress.com/ramy_el-ganainy/14/