Scinovex
article Open AccessTop 1% cited

Phase behaviour of active Brownian particles: the role of dimensionality

Soft Matter · 2013 · Vol. 10(10) · pp. 1489–1499
Joakim StenhammarDavide MarenduzzoRosalind J. AllenMichael E. Cates

Abstract

Recently, there has been much interest in activity-induced phase separations in concentrated suspensions of "active Brownian particles" (ABPs), self-propelled spherical particles whose direction of motion relaxes through thermal rotational diffusion. To date, almost all these studies have been restricted to 2 dimensions. In this work we study activity-induced phase separation in 3D and compare the results with previous and new 2D simulations. To this end, we performed state-of-the-art Brownian dynamics simulations of up to 40 million ABPs - such very large system sizes are unavoidable to evade finite size effects in 3D. Our results confirm the picture established for 2D systems in which an activity-induced phase separation occurs, with strong analogies to equilibrium gas-liquid spinodal decomposition, in spite of the purely non-equilibrium nature of the driving force behind the phase separation. However, we also find important differences between the 2D and 3D cases. Firstly, the shape and position of the phase boundaries is markedly different for the two cases. Secondly, for the 3D coarsening kinetics we find that the domain size grows in time according to the classical diffusive t(1/3) law, in contrast to the nonstandard subdiffusive exponent observed in 2D.

Micro and Nano RoboticsAdvanced Thermodynamics and Statistical MechanicsPickering emulsions and particle stabilizationSpinodal decompositionBrownian motionBrownian dynamicsCurse of dimensionalityThermal fluctuationsRotational diffusionStatistical physicsDiffusionThermal equilibriumPosition (finance)

Funding

  • Ministerio de Economía y Competitividad
  • Vetenskapsrådet
  • Engineering and Physical Sciences Research Council
Citations
366
FWCI
22.79
field-weighted impact
References
51
Percentile
100%
vs. same field & year
Citations per year
References
<i>Principles of Condensed Matter Physics</i>
Physics Today · 1995 · 2,246 citations
Fast Parallel Algorithms for Short-Range Molecular Dynamics
Journal of Computational Physics · 1995 · 43,820 citations
In pursuit of propulsion at the nanoscale
Soft Matter · 2010 · 622 citations
Hydrodynamics of soft active matter
Reviews of Modern Physics · 2013 · 3,980 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.