English

Thermodynamic behaviour of two-dimensional vesicles revisited

Statistical Mechanics 2011-05-12 v1

Abstract

We study pressurised self-avoiding ring polymers in two dimensions using Monte Carlo simulations, scaling arguments and Flory-type theories, through models which generalise the model of Leibler, Singh and Fisher [Phys. Rev. Lett. Vol. 59, 1989 (1987)]. We demonstrate the existence of a thermodynamic phase transition at a non-zero scaled pressure p~\tilde{p}, where p~=Np/4π\tilde{p} = Np/4\pi, with the number of monomers NN \rightarrow \infty and the pressure p0p \rightarrow 0, keeping p~\tilde{p} constant, in a class of such models. This transition is driven by bond energetics and can be either continuous or discontinuous. It can be interpreted as a shape transition in which the ring polymer takes the shape, above the critical pressure, of a regular N-gon whose sides scale smoothly with pressure, while staying unfaceted below this critical pressure. In the general case, we argue that the transition is replaced by a sharp crossover. The area, however, scales with N2N^2 for all positive pp in all such models, consistent with earlier scaling theories.

Keywords

Cite

@article{arxiv.1105.2121,
  title  = {Thermodynamic behaviour of two-dimensional vesicles revisited},
  author = {Mithun K. Mitra and Gautam I. Menon and R. Rajesh},
  journal= {arXiv preprint arXiv:1105.2121},
  year   = {2011}
}

Comments

6 pages, 4 figures, EPL format

R2 v1 2026-06-21T18:05:33.125Z