Orientational order of motile defects in active nematics
arXiv:1501.06228 · doi:10.1038/nmat4387
Abstract
The study of liquid crystals at equilibrium has led to fundamental insights into the nature of ordered materials, as well as to practical applications such as display technologies. Active nematics are a fundamentally different class of liquid crystals, driven away from equilibrium by the autonomous motion of their constituent rod-like particles. This internally generated activity powers the continuous creation and annihilation of topological defects, which leads to complex streaming flows whose chaotic dynamics appear to destroy long-range order. Here, we study these dynamics in experimental and computational realizations of active nematics. By tracking thousands of defects over centimetre-scale distances in microtubule-based active nematics, we identify a non-equilibrium phase characterized by system-spanning orientational order of defects. This emergent order persists over hours despite defect lifetimes of only seconds. Similar dynamical structures are observed in coarse-grained simulations, suggesting that defect-ordered phases are a generic feature of active nematics.
7 pages, 4 figures
References in corpus (5)
- Spontaneous motion in hierarchically assembled active matter
- Meso-scale turbulence in living fluids
- Topology and Dynamics of Active Nematic Vesicles
- Measuring cohesion between macromolecular filaments, one pair at a time: Depletion-induced microtubule bundling
- Defect-Mediated Phase Transitions in Active Soft Matter
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- Topological defect launches 3D mound in the active nematic sheet of neural progenitors
- Topological active matter
- Active Turbulence
- Topological structure and dynamics of three dimensional active nematics
- Patterning active materials with addressable soft interfaces
- Self-organized dynamics and the transition to turbulence of confined active nematics
- Stabilization of active matter by flow-vortex lattices and defect ordering
- Tunable structure and dynamics of active liquid crystals
- Controlling Organization and Forces in Active Matter Through Optically-Defined Boundaries
- Data-driven quantitative modeling of bacterial active nematics
- Active colloids in complex fluids
- Emergence of active nematics in bacterial biofilms
- Collective Dynamics of Self-propelled Semiflexible Filaments
- Review: Topology of solitons and singular defects in chiral liquid crystals
- Orientation of topological defects in 2D nematic liquid crystals
- Optimizing active work: Dynamical phase transitions, collective motion, and jamming
- Autonomous engines driven by active matter: Energetics and design principles
- Dynamically Generated Patterns in Dense Suspensions of Active Filaments
- Machine learning active-nematic hydrodynamics
- Active turbulence in active nematics
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- Orientational properties of nematic disclinations
- Lattice Boltzmann Methods and Active Fluids
- Statistical Properties of Autonomous Flows in 2D Active Nematics
- Insensitivity of active nematic dynamics to topological constraints
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- Entropy Production Rate is Maximized in Non-Contractile Actomyosin
- Optimal Control of Active Nematics
- Probing the shear viscosity of an active nematic
- Dynamical patterns in active nematics on a sphere
- Confinement controlled bend instability of three-dimensional active fluids
- Hydrodynamics of Active Defects: from order to chaos to defect ordering
- Conformation and dynamics of a self-avoiding active flexible polymer
- Schools of skyrmions with electrically tunable elastic interactions
- Estimating physical properties from liquid crystal textures via machine learning and complexity-entropy methods
- Geometrical control of active turbulence in curved topographies
- How dissipation constrains fluctuations in nonequilibrium liquids: Diffusion, structure and biased interactions
- Negative stiffness and modulated states in active nematics
- Design of nematic liquid crystals to control microscale dynamics
- Antipolar ordering of topological defects in active liquid crystals
- Tunable corrugated patterns in an active gel sheet
- Thermodynamics of active field theories: Energetic cost of coupling to reservoirs
- Collective behavior of active topological solitons, knotted streamlines, and transport of cargo in liquid crystals
- Real Space Analysis of Colloidal Gels: Triumphs, Challenges and Future Directions
- Geometry and mechanics of disclination lines in 3D nematic liquid crystals
- Geometry-dependent viscosity reduction in sheared active fluids
- Understanding dense active nematics from microscopic models
- Design principles for selective self-assembly of active networks
- Twist-induced crossover from 2D to 3D turbulence in active nematics
- Topology of three-dimensional active nematic turbulence confined to droplets
- Hydrodynamic instabilities in active cholesteric liquid crystals
- Theory of defect motion in 2D passive and active nematic liquid crystals
- Active boundary layers
- Oscillatory chiral flows in confined active fluids with obstacles
- Emergent Structures in an Active Polar Fluid : dynamics of shape, scattering and merger
- Large-scale orientational order in bacterial colonies during inward growth
- Data-driven discovery of active nematic hydrodynamics
- Predictive local field theory for interacting active Brownian spheres in two spatial dimensions
- Role of friction in multidefect ordering
- Towards the cellular-scale simulation of motor-driven cytoskeletal assemblies
- Multiscale Microtubule Dynamics in Active Nematics
- Collective dynamics of active Brownian particles in three spatial dimensions: a predictive field theory
- Pair creation, motion, and annihilation of topological defects in 2D nematics
- Multiphase field models for collective cell migration
- Gliding filament system giving both orientational order and clusters in collective motion
- Cascade or not cascade? Energy transfer and elastic effects in active nematics
- Molecular-scale substrate anisotropy and crowding drive long-range nematic order of cell monolayers
- Rectified Rotational Dynamics of Mobile Inclusions in Two-Dimensional Active Nematics
- Geometry-Induced Dynamics of Confined Chiral Active Matter
- Statistical properties of a tangentially driven active filament
- Morphological transitions of active Brownian particle aggregates on porous walls
- Hydrodynamic theory of atic liquid crystals
- Designing, Synthesizing and Modeling Active Fluids
- Inertia drives a flocking phase transition in viscous active fluids
- Orientational correlations in active and passive nematic defects
- The crucial role of adhesion in the transmigration of active droplets through interstitial orifices
- Controlling topological defects and contractile flow in confined nematic cell population
- Geometry and mechanics of microdomains in growing bacterial colonies
- Properties of twisted topological defects in 2D nematic liquid crystals
- Active Matter Invasion
- Optically enriched and guided dynamics of active skyrmions
- Tunable cryogenic THz cavity for strong light-matter coupling in complex materials
- Defects Superdiffusion and Unbinding in a 2D XY Model of Self-Driven Rotors
- Curvature-controlled defect dynamics in active systems
- Active liquid crystals powered by force-sensing DNA-motor clusters
- Binding self-propelled topological defects in active turbulence
- Microdomains and Stress Distributions in Bacterial Monolayers on Curved Interfaces
- Defect order in active nematics on a curved surface
- Kinetic theory of pattern formation in mixtures of microtubules and molecular motors
- Activity driven orientational order in active nematic liquid crystals on an anisotropic substrate
- Dynamical Sub-classes of Dry Active Nematics
- Weakly nonlinear analysis of pattern formation in active suspensions
- Vortex Lattices in Active Nematics with Periodic Obstacle Arrays
- Catapulting of topological defects through elasticity bands in active nematics
- Trapping in Self-Avoiding Walks with Nearest-Neighbor Attraction
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- First passage statistics of active random walks on one and two dimensional lattices
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- Activity induced isotropic-polar transition in active liquid crystals
- Deriving hydrodynamic equations from dry active matter models in three dimensions
- Order by disorder: saving collective motion from topological defects in a conservative model
- Many-defect solutions in planar nematics: interactions, spiral textures and boundary conditions
- Active nematic defects in compressible and incompressible flows
- Future Directions for Active Matter on Ordered Substrates
- Network topology of interlocked chiral particles
- Colloidal smectics in button-like confinements: experiment and theory
- Nonlinear spontaneous flow instability in active nematics
- Mechanochemical Topological Defects in an Active Nematic
- Fractal generation in a two-dimensional active-nematic fluid
- Phase transitions on a class of generalized Vicsek-like models of collective motion
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- Analytical model for the motion and interaction of two-dimensional active nematic defects
- Machine learning topological defects in confluent tissues
- Understanding the role of transport velocity in biomotor-powered microtubule spool assembly
- Topological phases in discrete stochastic systems
- Spontaneous rotation and propulsion of suspended capsules in active nematics
- Strain rate controls alignment in growing bacterial monolayers
- Turbulence to order transitions in activity patterned active nematics
- Coarsening of topological defects in 2D polar active matter
- A robustness measure for singular point and index estimation in discretized orientation and vector fields
- Anti-hyperuniform Critical States of Active Topological Defects
- Cooperation and competition of basepairing and electrostatic interactions in mixtures of DNA nanostars and polylysine
- Memory effects, arches and polar defect ordering at the cross-over from wet to dry active nematics
- Aspect-ratio-dependent void formation in active rhomboidal and elliptical particle systems
- Activity-induced phase transition and coarsening dynamics in dry apolar active nematics
- The importance of being discrete -- An agent-based model for active nematics and more
- Filamentous Active Matter: Band Formation, Bending, Buckling, and Defects
- Dynamical arrest in active nematic turbulence
- Individual particle persistence antagonizes global ordering in populations of nematically-aligning self-propelled particles
- Topological fine structure of smectic grain boundaries and tetratic disclination lines within three-dimensional smectic liquid crystals