Active Jamming: Self-propelled soft particles at high density
arXiv:1107.4072 · doi:10.1103/PhysRevE.84.040301
Abstract
We study numerically the phases and dynamics of a dense collection of self-propelled particles with soft repulsive interactions in two dimensions. The model is motivated by recent in vitro experiments on confluent monolayers of migratory epithelial and endothelial cells. The phase diagram exhibits a liquid phase with giant number fluctuations at low packing fraction and high self-propulsion speed and a jammed phase at high packing fraction and low self-propulsion speed. The dynamics of the jammed phase is controlled by the low frequency modes of the jammed packing.
4 pages, 4 figures
References in corpus (11)
- Novel type of phase transition in a system of self-driven particles
- Self-motile colloidal particles: from directed propulsion to random walk
- Jamming at Zero Temperature and Zero Applied Stress: the Epitome of Disorder
- The Dynamics of Crowd Disasters: An Empirical Study
- Long-lived Giant Number Fluctuations in a Swarming Granular Nematic
- Collective Motion of Vibrated Polar Disks
- Phase transition in the collective migration of tissue cells: experiment and model
- Vibrations and diverging length scales near the unjamming transition
- Minimal model for active nematics: quasi-long-range order and giant fluctuations
- The glass transition of dense fluids of hard and compressible spheres
- Heterogeneous Dynamics, Marginal Stability and Soft Modes in Hard Sphere Glasses
Cited by in corpus (177)
- Active Particles in Complex and Crowded Environments
- Motility-Induced Phase Separation
- Spontaneous motion in hierarchically assembled active matter
- Athermal Phase Separation of Self-Propelled Particles with no Alignment
- A density-independent glass transition in biological tissues
- Motility-driven glass and jamming transitions in biological tissues
- Emergent behavior in active colloids
- Physical Models of Collective Cell Migration
- Nonequilibrium glass transitions in driven and active matter
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- A self-propelled particle in an external potential: is there an effective temperature?
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- Pattern formation in self-propelled particles with density-dependent motility
- The statistical physics of active matter: from self-catalytic colloids to living cells
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- Energy barriers govern glassy dynamics in tissues
- Mode-Coupling Theory of the Glass Transition: A Primer
- Dynamic clustering and chemotactic collapse of self-phoretic active particles
- Turbulent dynamics of epithelial cell cultures
- Minimal model of active colloids highlights the role of mechanical interactions in controlling the emergent behavior of active matter
- Nonequilibrium glassy dynamics of self-propelled hard disks
- Dense active matter model of motion patterns in confluent cell monolayers
- Perspective: Nonequilibrium glassy dynamics in dense systems of active particles
- Long-range Ordering of Vibrated Polar Disks
- Emergent states in dense systems of active rods: from swarming to turbulence
- A geometrically controlled rigidity transition in a model for confluent 3D tissues
- Selective and Collective Actuation in Active Solids
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- Active Matter Transport and Jamming on Disordered Landscapes
- Correlating Cell Shape and Cellular Stress in Motile Confluent Tissues
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- The nonequilibrium glassy dynamics of self-propelled particles
- Emergent structures and dynamics of cell colonies by contact inhibition of locomotion
- cellGPU: massively parallel simulations of dynamic vertex models
- Extreme active matter at high densities
- Shape and Displacement Fluctuations in Soft Vesicles Filled by Active Particles
- How active forces influence nonequilibrium glass transitions
- Active fluidization in dense glassy systems
- Active glasses
- Crystallization of self-propelled hard-discs : a new scenario
- Generic long-range interactions between passive bodies in an active fluid
- Active swarms on a sphere
- Cell division and death inhibit glassy behaviour of confluent tissues
- A theory for the dynamics of dense systems of athermal self-propelled particles
- Soft yet sharp interfaces in a vertex model of confluent tissue
- Rectification and diffusion of self-propelled particles in a two-dimensional corrugated channel
- Self-propelled hard disks: implicit alignment and transition to collective motion
- Velocity alignment promotes motility-induced phase separation
- Dynamical patterns in active nematics on a sphere
- Surprising mappings of 2D polar active fluids to 2D soap and 1D sandblasting
- Hydrodynamics of Active Defects: from order to chaos to defect ordering
- Self-Aligning Polar Active Matter
- A direct link between active matter and sheared granular systems
- Aging and rejuvenation of active matter under topological constraints
- Nonlinear Rheology in a Model Biological Tissue
- Effective temperatures in inhomogeneous passive and active bidimensional Brownian particle systems
- Universal hydrodynamic mechanisms for crystallization in active colloidal suspensions
- Emergent Structural Mechanisms for High-Density Collective Motion Inspired by Human Crowds
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- Transport of active ellipsoidal particles in ratchet potentials
- Self-enhanced mobility enables vortex pattern formation in living matter
- Effect of polydispersity on the dynamics of active Brownian particles
- Unidirectional laning and migrating cluster crystals in confined self-propelled particle systems
- Characterization of MIPS in a suspension of repulsive Active Brownian Particles through dynamical features
- Critical Phenomena in Active Matter
- Glassy swirls of active dumbbells
- Glassy Dynamics in Chiral Fluids
- Mode-coupling theory for the steady-state dynamics of active Brownian particles
- Controlled neighbor exchanges drive glassy behavior, intermittency and cell streaming in epithelial tissues
- Velocity alignment leads to high persistence in confined cells
- Glassy dynamics of a model of bacterial cytoplasm with metabolic activities
- Cage Length Controls the Non-Monotonic Dynamics of Active Glassy Matter
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- Designing, Synthesizing and Modeling Active Fluids
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- Active Solids Model: Rigid Body Motion and Shape-changing Mechanisms
- Aging in thermal active glasses
- Arrested States in Persistent Active Matter: Gelation without Attraction
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- Sparse game changers restore collective motion in panicked human crowds
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- Emerging mesoscale flows and chaotic advection in dense active matter
- Anomalous segregation dynamics of self-propelled particles
- Coherent motion of monolayer sheets under confinement and its pathological implications
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- Beating of grafted chains induced by active Brownian particles
- Probing the role of mobility in the collective motion of non-equilibrium systems
- Confinement-induced alternating interactions between inclusions in an active fluid
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- Theoretical approaches to the steady-state statistical physics of interacting dissipative units
- How to Study a Persistent Active Glassy System?
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- Polar active liquids: a universal classification rooted in nonconservation of momentum
- Long-range translational order and hyperuniformity in two-dimensional chiral active crystal
- Active dry granular flows: rheology and rigidity transitions
- Individual and collective dynamics of self-propelled soft particles
- Fluid-Glass-Jamming Rheology of Soft Active Brownian Particles
- Polar order, shear banding, and clustering in confined active matter
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- Scaling Theory for the Frictionless Unjamming Transition
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- Shear Induced Orientational Ordering in Active Glass
- Kinetic Monte-Carlo Algorithms for Active-Matter systems
- Alignment interactions drive structural transitions in biological tissues
- Emergent Mesoscale Correlations in Active Solids with Noisy Chiral Dynamics
- Interplay between jamming and MIPS in persistent self-propelling particles
- A Simulation Algorithm for Brownian Dynamics on Complex Curved Surfaces
- Jamming and flocking in the restricted active Potts model
- Bose-Einstein-like Condensation due to Diffusivity Edge under Periodic Confinement
- Long-range order in two-dimensional systems with fluctuating active stresses
- Data-driven model construction for anisotropic dynamics of active matter
- Ergodicity breaking transition in a glassy soft sphere system at small but non-zero temperatures
- Noise-Induced Collective Actuation in Active Solids
- The Influence of Particle Softness on Active Glassy Dynamics
- Order-disorder transition in repulsive self-propelled particle systems
- Mechanochemical Active Ratchet
- Excitation of vibrational soft modes in disordered systems using active oscillation
- Scalable marginalization of correlated latent variables with applications to learning particle interaction kernels
- Anisotropic run-and-tumble-turn dynamics
- Rejuvenation and memory effects in active glasses induced by thermal and active cycling
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- Universal scaling for disordered viscoelastic matter near the onset of rigidity
- Displacement correlations in disordered athermal networks
- Self-propulsion and self-navigation: Activity is a precursor to jamming
- Overcrowding drives the unjamming transition of gap-free monolayers
- Bringing together two paradigms of non-equilibrium: Fragile versus robust aging in driven glassy systems
- Diffusion coefficient and power spectrum of active particles with a microscopically reversible mechanism of self-propelling
- Active Phases for Particles on Resource Landscapes
- Symmetry-driven Phononic Metamaterials
- Active Jamming at Criticality
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- Temperature dependence of the transition packing fraction of thermal jamming in a harmonic soft sphere system
- Structured randomness: Jamming of soft discs and pins
- Self-Aligning Active Agents with Inertia and Active Torque
- Active particle dynamics beyond the jamming density
- Propagating irreversibility fronts in cyclically-sheared suspensions
- Co-regulation of multi-cellular swirling by individual cellular chirality and boundaries
- Topological signatures of collective dynamics and turbulent-like energy cascades in apolar active granular
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