English

Aggregation of superparamagnetic colloids in magnetic fields: the quest for the equilibrium state

Soft Condensed Matter 2012-02-07 v1 Materials Science Statistical Mechanics

Abstract

Experimental and simulation studies of superparamagnetic colloids in strong external fields have systematically shown an irreversible aggregation process in which chains of particles steadily grow and the average size increases with time as a power-law. Here we show, by employing Langevin dynamics simulations the existence of a different aggregation behavior: aggregates form during a transient period and the system attains an equilibrium distribution of aggregate sizes. A thermodynamic self-assembly theory supports the simulation results and it also predicts that the average aggregate size in the equilibrium state depends only on a dimensionless parameter combining the volume fraction of colloids phi0 and the magnetic coupling parameter Gamma. The conditions under which this new behavior can be observed are discussed.

Keywords

Cite

@article{arxiv.1011.4819,
  title  = {Aggregation of superparamagnetic colloids in magnetic fields: the quest for the equilibrium state},
  author = {Jordi S. Andreu and Juan Camacho and Jordi Faraudo},
  journal= {arXiv preprint arXiv:1011.4819},
  year   = {2012}
}