English

Scaling limits for planar aggregation with subcritical fluctuations

Probability 2022-11-08 v4 Mathematical Physics Complex Variables math.MP

Abstract

We study scaling limits of a family of planar random growth processes in which clusters grow by the successive aggregation of small particles. In these models, clusters are encoded as a composition of conformal maps and the location of each successive particle is distributed according to the density of harmonic measure on the cluster boundary, raised to some power. We show that, when this power lies within a particular range, the macroscopic shape of the cluster converges to a disk, but that as the power approaches the edge of this range the fluctuations approach a critical point, which is a limit of stability. The methodology developed in this paper provides a blueprint for analysing more general random growth models, such as the Hastings-Levitov family.

Keywords

Cite

@article{arxiv.1902.01376,
  title  = {Scaling limits for planar aggregation with subcritical fluctuations},
  author = {James Norris and Vittoria Silvestri and Amanda Turner},
  journal= {arXiv preprint arXiv:1902.01376},
  year   = {2022}
}

Comments

62 pages, 7 figures. In version 4, we have moved some of the technical estimates into appendices, to aid readability

R2 v1 2026-06-23T07:31:49.237Z