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Nematic-isotropic spinodal decomposition kinetics of rodlike viruses
M Paul Lettinga1, Kyongok Kang, Peter Holmqvist
1Forschungs Zentrum Jülich, IFF, Weiche Materie, Jülich, D-52425 Jülich, Germany.
Abstract:
We investigate spinodal decomposition kinetics of an initially nematic dispersion of rodlike viruses. Quench experiments are performed from a flow-stabilized homogeneous nematic state at a high shear rate into the two-phase isotropic-nematic coexistence region at a zero shear rate. We present experimental evidence that spinodal decomposition is driven by orientational diffusion, in accordance with a very recent theory.
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