Ohta-Kawasaki energy for amphiphiles: asymptotics and phase-field simulations
Optimization and Control
2024-09-16 v3 Soft Condensed Matter
Abstract
We study the minimizers of a degenerate case of the Ohta-Kawasaki energy, defined as the sum of the perimeter and a Coulombic nonlocal term. We start by investigating radially symmetric candidates which give us insights into the asymptotic behaviors of energy minimizers in the large mass limit. In order to numerically study the problems that are analytically challenging, we propose a phase-field reformulation which is shown to Gamma-converge to the original sharp interface model. Our phase-field simulations and asymptotic results suggest that the energy minimizers exhibit behaviors similar to the self-assembly of amphiphiles, including the formation of lipid bilayer membranes.
Keywords
Cite
@article{arxiv.2401.05679,
title = {Ohta-Kawasaki energy for amphiphiles: asymptotics and phase-field simulations},
author = {Qiang Du and James M. Scott and Zirui Xu},
journal= {arXiv preprint arXiv:2401.05679},
year = {2024}
}
Comments
51 pages; 14 figures; minor revisions made