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- W2022230778 endingPage "2532" @default.
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- W2022230778 abstract "Dispersive chaos is a dynamical state that consists of the repeated, irregular growth and abrupt decay of spatially localized bursts of traveling waves. This state can be observed just above onset in convection in binary fluids at small, negative separation ratio ensuremath{psi}, in a long, quasi-one-dimensional geometry. We describe experiments in which this erratic behavior is suppressed by applying as feedback a spatially varying Rayleigh-number profile computed from the measured convection pattern. With the appropriate feedback algorithm, an initial state consisting of unidirectional traveling waves of spatially uniform amplitude and wave number can be maintained in a steady state over a large fraction of the unstable branch of the subcritical bifurcation to convection. This allows us to measure the nonlinear coefficients of the corresponding quintic complex Ginzburg-Landau equation." @default.
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- W2022230778 date "2000-03-01" @default.
- W2022230778 modified "2023-09-26" @default.
- W2022230778 title "Spatial-feedback control of dispersive chaos in binary-fluid convection" @default.
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- W2022230778 doi "https://doi.org/10.1103/physreve.61.2519" @default.
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