English

Persistent Collective Motion of a Dispersing Membrane Domain

Biological Physics 2021-05-25 v2 Soft Condensed Matter

Abstract

We study the Brownian motion of an assembly of mobile inclusions embedded in a fluid membrane. The motion includes the dispersal of the assembly, accompanied by the diffusion of its center of mass. Usually, the former process is much faster than the latter, since the diffusion coefficient of the center of mass is inversely proportional to the number of particles. However, in the case of membrane inclusions, we find that the two processes occur on the same time scale, thus prolonging significantly the lifetime of the assembly as a collectively moving object. This effect is caused by the quasi-two-dimensional membrane flows, which couple the motions even of the most remote inclusions in the assembly. The same correlations also cause the diffusion coefficient of the center of mass to decay slowly with time, resulting in weak sub-diffusion. We confirm our analytical results by Brownian dynamics simulations with flow-mediated correlations. The effect reported here should have implications for the stability of nano-scale membrane heterogeneities.

Keywords

Cite

@article{arxiv.2012.11271,
  title  = {Persistent Collective Motion of a Dispersing Membrane Domain},
  author = {Benjamin Sorkin and Haim Diamant},
  journal= {arXiv preprint arXiv:2012.11271},
  year   = {2021}
}

Comments

13 pages

R2 v1 2026-06-23T21:07:26.665Z