Mode instabilities and dynamic patterns in a colony of self-propelled surfactant particles covering a thin liquid layer
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Summary
It is shown that point-like swimmers, which only interact via long-wave deformations of the liquid film, self-organise in highly regular (standing, travelling, and modulated waves) and various irregular patterns.
- Type
- article
- Published
- 2016-01-09
- Cited by
- 14
- References
- 87
- Access
- Open access
- OpenAlex
- https://openalex.org/W27145959
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4768979
Keywords
Economics
References
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Cited by
- Gradient dynamics models for liquid films with soluble surfactant
- Recent advances in and future challenges for mesoscopic hydrodynamic modelling of complex wetting
- Transport of finite size self-propelled particles confined in a 2D zigzag channel with Gaussian colored noise
- Surfactants and rotelles in active chiral fluids
- Transport of self-propelled Janus particles confined in corrugated channel with Lévy noise
- Fluid interfaces laden by force dipoles: towards active matter-driven microfluidic flows.
- Fingering Instability of Binary Droplets on Oil Pool
- Marangoni Flow Investigation in Foam Fractionation Phenomenon
- Nonreciprocal Cahn-Hilliard Model Emerges as a Universal Amplitude Equation.
- An amplitude equation for the conserved-Hopf bifurcation-Derivation, analysis, and assessment.
- The effect of self-induced Marangoni flow on polar-nematic waves in active-matter systems
- Loughborough University Institutional Repository Gradient dynamics models for liquid lms with soluble surfactant
- Recent advances in and future challenges for mesoscopic hydrodynamic modelling of complex wetting
- Nonreciprocal Cahn-Hilliard equations emerging as one of eight universal amplitude equations
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