arXiv · patt-sol/9510006
Secondary Instabilities of Surface Waves on Viscous Fluids in the Faraday Instability
Abstract
Secondary instabilities of Faraday waves show three regimes: (1) As seen previously, low-viscosity (nu) fluids destabilize first into squares. At higher driving accelerations a, squares show low-frequency modulations corresponding to the motion of phase defects, while theory predicts a stationary transverse amplitude modulation (TAM). (2) High-nu fluids destabilize first to stripes. Stripes then show an oscillatory TAM whose frequency is incommensurate with the driving frequency. At higher a, the TAM undergoes a phase instability. At still higher a, edge dislocations form and fluid droplets are ejected. (3) Intermediate-nu fluids show a complex coexistence of squares and stripes, as well as stationary and oscillatory TAM instabilities of the stripes.
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Laurent Daudet, Valerie Ego, Sebastien Manneville, John Bechhoefer. 1995-10-26. Secondary Instabilities of Surface Waves on Viscous Fluids in the Faraday Instability. https://doi.org/10.1209/0295-5075%2F32%2F4%2F005
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