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Phase Ordering in Binary Mixtures of Active Nematic Fluids

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arxiv 2404.19061 v1 pith:ZFZHNZMA submitted 2024-04-29 cond-mat.soft

classification cond-mat.soft
keywords activenematicalignmentelasticfluidsmixturesorderingresults
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We use a continuum, two-fluid approach to study a mixture of two active nematic fluids. Even in the absence of thermodynamically-driven ordering, for mixtures of different activities we observe turbulent microphase separation, where domains form and disintegrate chaotically in an active turbulent background. This is a weak effect if there is no elastic nematic alignment between the two fluid components, but is greatly enhanced in the presence of an elastic alignment or substrate friction. We interpret the results in terms of relative flows between the two species which result from active anchoring at concentration gradients. Our results may have relevance in interpreting epithelial cell sorting and the dynamics of multi-species bacterial colonies.

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Cited by 1 Pith paper

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  1. Unconventional Growth Kinetics and Fractal Interfaces of Colloidal Phase Separation in Active Liquids

    cond-mat.soft 2025-08 unverdicted novelty 6.0 of 10

    Colloids in a bacterial bath are claimed to phase separate with fractal interfaces and domain growth exponent z~4, reproduced by a scalar field theory with correlated noise, but the submitted manuscript body does not ...

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