Taming active turbulence with patterned soft interfaces
arXiv:1611.06416 · doi:10.1038/s41467-017-00617-1
Abstract
Active matter embraces systems that self-organize at different length and time scales, often exhibiting turbulent flows. Here, we use a quasi-two-dimensional nematically ordered layer of a protein-based active gel to experimentally demonstrate that the geometry of active flows, which we have characterized by means of the statistical distribution of eddy sizes, can be reversibly modified. To this purpose, the active material is prepared in contact with a thermotropic liquid crystal, whose lamellar smectic-A phase tiles the water/oil interface with a lattice of anisotropic domains that feature circular easy-flow directions. The active flow, which arises from the motion of parabolic folds within the filamentous active material, becomes effectively confined into circulating eddies that are in registry with the underlying smectic-A domains. Based on topological arguments applied to the circular confinement, together with well-known properties of the active material, we show that the structure of the active flow is determined by a single intrinsic length scale. The role of this length scale thus reemerges from setting the decay length in the exponential eddy size distribution of the free turbulent regime, to determining the minimum size of circulating eddies featuring a scale-free power law. Our results demonstrate that soft-confinement provides with an invaluable tool to probe the intrinsic length and time scales of active materials, and pave the way for further exploration looking for similarities and differences between active and passive two-dimensional turbulence.
Main manuscript and Supplementary Material. Movies available in http://www.ub.edu/socsam/AGEddies/
References in corpus (11)
- Spontaneous motion in hierarchically assembled active matter
- Meso-scale turbulence in living fluids
- Topology and Dynamics of Active Nematic Vesicles
- Fluid Flows Created by Swimming Bacteria Drive Self-Organization in Confined Suspensions
- Command of active matter by topological defects and patterns
- Defect dynamics in active nematics
- Patterning active materials with addressable soft interfaces
- Tunable dynamics of microtubule based active isotropic gels
- Correlation lengths in hydrodynamic models of active nematics
- Probing the shear viscosity of an active nematic
- Defect-Mediated Phase Transitions in Active Soft Matter
Cited by in corpus (63)
- The 2019 Motile Active Matter Roadmap
- Topological active matter
- Active Turbulence
- Turbulent dynamics of epithelial cell cultures
- Self-organized dynamics and the transition to turbulence of confined active nematics
- Data-driven quantitative modeling of bacterial active nematics
- Defect unbinding in active nematics
- Universal scaling of active nematic turbulence
- Emergence of active nematics in bacterial biofilms
- Statistical Properties of Autonomous Flows in 2D Active Nematics
- Polar jets of swimming bacteria condensed by a patterned liquid crystal
- Optimal Control of Active Nematics
- Submersed Micropatterned Structures Control Active Nematic Flow, Topology and Concentration
- Hydrodynamics of Active Defects: from order to chaos to defect ordering
- Geometrical control of active turbulence in curved topographies
- Design of nematic liquid crystals to control microscale dynamics
- Kolmogorovian active turbulence of a sparse assembly of interacting swimmers
- Activity induced nematic order in isotropic liquid crystals
- Active boundary layers
- Wrinkling instability in 3D active nematics
- Integer topological defects of cell monolayers -- mechanics and flows
- Multiscale Microtubule Dynamics in Active Nematics
- Pair creation, motion, and annihilation of topological defects in 2D nematics
- Chiral stresses in nematic cell monolayers
- Spontaneous Self-Constraint in Active Nematic Flows
- Cascade or not cascade? Energy transfer and elastic effects in active nematics
- Geometry-Induced Dynamics of Confined Chiral Active Matter
- Lamellar ordering, droplet formation and phase inversion in exotic active emulsions
- Defect Spirograph: Dynamical Behavior of Defects in Spatially Patterned Active Nematics
- Probing active nematics with in-situ microfabricated elastic inclusions
- Orientational correlations in active and passive nematic defects
- Properties of twisted topological defects in 2D nematic liquid crystals
- Active Matter Invasion
- Spontaneous membrane formation and self-encapsulation of active rods in an inhomogeneous motility field
- Anomalous fluctuations in homogeneous fluid phase of active Brownian particles
- Alignment of a topological defect by an activity gradient
- Binding self-propelled topological defects in active turbulence
- Defect order in active nematics on a curved surface
- Scaling regimes of active turbulence with external dissipation
- Activity driven orientational order in active nematic liquid crystals on an anisotropic substrate
- Flow around topological defects in active nematic films
- Complex-tensor theory of simple smectics
- Tubulation and dispersion of oil by bacterial growth on droplets
- Taming Polar Active Matter with Moving Substrates: Directed Transport and Counterpropagating Macrobands
- Activity induced isotropic-polar transition in active liquid crystals
- Vorticity phase separation and defect lattices in the isotropic phase of active liquid crystals
- Coexistence of defect morphologies in three dimensional active nematics
- Nonlinear spontaneous flow instability in active nematics
- Flow patterns and defect dynamics of active nematics under an electric field
- Fractal generation in a two-dimensional active-nematic fluid
- Mechanochemical Topological Defects in an Active Nematic
- Cascades and Kolmogorov's lognormal scaling in two-dimensional bacterial turbulence
- Emergence of Local Ordering and Mesoscale Giant Number Fluctuations in Active Turbulence
- Quadrupolar active stress induces exotic phases of defect motion in active nematics
- Oscillating edge current in polar active fluid
- Nematic liquid crystal flow driven by time-varying active surface anchoring
- Memory effects, arches and polar defect ordering at the cross-over from wet to dry active nematics
- Irreversibility in scalar active turbulence: The role of topological defects
- Dynamical arrest in active nematic turbulence
- Nematic order condensation and topological defects in inertial active nematics
- Collective epithelial migration mediated by the unbinding of hexatic defects
- Stable and unstable flow regimes for active fluids in the periodic setting
- Filamentous Active Matter: Band Formation, Bending, Buckling, and Defects