Self-organized Multi-Frequency Clusters in an Oscillating Electrochemical System with Strong Nonlinear Coupling
Adaptation and Self-Organizing Systems
2021-05-19 v2 Pattern Formation and Solitons
Abstract
We study the spatio-temporal dynamics of the oscillatory photo-electrodissolution of n-type Si in a fluoride-containing electrolyte under anodic potentials using in-situ ellipsometric imaging. When lowering the illumination intensity step-wise, we successively observe uniform oscillations, modulated amplitude clusters, and the coexistence of multi-frequency clusters i.e., regions with different frequencies, with a stationary domain. We argue that the multi-frequency clusters emerge due to an adaptive, nonlinear, and nonlocal coupling, similar to those found in the context of neural dynamics.
Cite
@article{arxiv.2010.03535,
title = {Self-organized Multi-Frequency Clusters in an Oscillating Electrochemical System with Strong Nonlinear Coupling},
author = {Maximilian Patzauer and Katharina Krischer},
journal= {arXiv preprint arXiv:2010.03535},
year = {2021}
}
Comments
7 pages, 4 figures, v2 with corrected reference formatting