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Diffusion transients in motility-induced phase separation

Shubhadip Nayak, Poulami Bag, Pulak K. Ghosh, Yunyun Li, Yuxin Zhou, Qingqing Yin, Fabio Marchesoni, Franco Nori

2025Physical Review Research12 citationsDOIOpen Access PDF

Abstract

We numerically investigate normal diffusion in a two-dimensional athermal suspension of active particles undergoing motility-induced phase separation. The particles are modeled as achiral Janus disks with fixed self-propulsion speed and weakly fluctuating orientation. When plotted versus the overall suspension packing fraction, the relevant diffusion constant traces a hysteresis loop with sharp jumps in correspondence with the binodal and spinodal of the gaseous phase. No hysteresis loop is observed between the spinodal and binodal of the dense phase, as they appear to overlap. Moreover, even under steady-state phase separation, the particle displacement distributions exhibit non-Gaussian normal diffusion with transient fat (thin) tails in the presence (absence) of phase separation.

Topics & Concepts

BinodalSpinodalDiffusionPhase (matter)HysteresisMaterials scienceParticle (ecology)Steady state (chemistry)Suspension (topology)Spinodal decompositionMechanicsThermodynamicsCondensed matter physicsChemistryPhysicsPhase diagramMathematicsPure mathematicsHomotopyOceanographyPhysical chemistryGeologyOrganic chemistryMicro and Nano RoboticsPickering emulsions and particle stabilizationAdvanced Thermodynamics and Statistical Mechanics