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- W2292460860 abstract "Using a highly viscous magnetic fluid, the dynamics in the aftermath of the Rosensweig instability can be slowed down by more than 2000 times. In this way we expand the regime where the growth rate is predicted to scale linearly with the bifurcation parameter by six orders of magnitude, while this regime is tiny for standard ferrofluids and can not be resolved experimentally there. We measure the growth of the pattern by means of a two-dimensional imaging technique, and find that the slopes of the growth and decay rates are not the same - a qualitative discrepancy to the theoretical predictions. We solve this discrepancy by taking into account a viscosity which is assumed to be different for the growth and decay. This may be a consequence of the measured shear thinning of the ferrofluid." @default.
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- W2292460860 date "2016-04-05" @default.
- W2292460860 modified "2023-09-24" @default.
- W2292460860 title "Retarding the growth of the Rosensweig instability unveils a new scaling regime" @default.
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- W2292460860 doi "https://doi.org/10.1103/physreve.93.043106" @default.
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