Ehud Meron

Senior Academic

Dual-mode spiral vortices

Yair Mau, Aric Hagberg, Ehud Meron

We show that spiral vortices in oscillatory systems can lose stability to secondary modes to form dual-mode spiral vortices. The secondary modes grow at the vortex core where the oscillation amplitude vanishes but are nonlinearly damped by the oscillatory mode away from the core. Gradients of the oscillation phase, induced by the hosted secondary mode, can lead to additional hosting events that culminate in periodic core oscillations or in a novel form of spatiotemporal chaos. The results of this study apply to physical, chemical, and biological systems that go through cusp-Hopf, fold-Hopf, and Hopf-Turing bifurcations.

Publication language English
Volume 80
Issue number 6
Publication status Published - 08.12.2009

ASJC Scopus subject areas

Condensed Matter Physics
Statistical and Nonlinear Physics
Statistics and Probability
Access to Document
10.1103/PhysRevE.80.065203
Other files and links
Link to publication in Scopus