Publication | Open Access
Full Phase Diagram of Active Brownian Disks: From Melting to Motility-Induced Phase Separation
329
Citations
42
References
2018
Year
EngineeringActive Brownian DisksProper Hexatic PhaseActive FluidSoft MatterMotility-induced Phase SeparationFull Phase DiagramNucleationRheologyThermodynamicsPhase SeparationHexatic OrderMaterials ScienceComplex MatterPhysicsComplete Phase DiagramActive MatterSolid MechanicsBrownian MotionPhase EquilibriumApplied PhysicsCondensed Matter Physics
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from the analysis of the equation of state and the statistics of local order parameters. The equilibrium melting scenario is maintained at small activities, with coexistence between active liquid and hexatic order, followed by a proper hexatic phase, and a further transition to an active solid. As activity increases, the emergence of hexatic and solid order is shifted towards higher densities. Above a critical activity and for a certain range of packing fractions, the system undergoes motility-induced phase separation and demixes into low and high density phases; the latter can be either disordered (liquid) or ordered (hexatic or solid) depending on the activity.
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