A Convergence Rate for Extended-Source Internal DLA in the Plane

Author:

Darrow DavidORCID

Abstract

AbstractInternal DLA (IDLA) is an internal aggregation model in which particles perform random walks from the origin, in turn, and stop upon reaching an unoccupied site. Levine and Peres showed that, when particles start instead from fixed multiple-point distributions, the modified IDLA processes have deterministic scaling limits related to a certain obstacle problem. In this paper, we investigate the convergence rate of this “extended source” IDLA in the plane to its scaling limit. We show that, if $$\delta $$ δ is the lattice size, fluctuations of the IDLA occupied set are at most of order $$\delta ^{3/5}$$ δ 3 / 5 from its scaling limit, with probability at least $$1-e^{-1/\delta ^{2/5}}$$ 1 - e - 1 / δ 2 / 5 .

Funder

national science foundation

Publisher

Springer Science and Business Media LLC

Subject

Analysis

Reference19 articles.

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3. Asselah, A., Gaudillière, A.: From logarithmic to subdiffusive polynomial fluctuations for internal DLA and related growth models. Ann. Probab. 41(3A), 1115–1159 (2013). https://doi.org/10.1214/12-AOP762

4. Asselah, A., Gaudillière, A.: Sublogarithmic fluctuations for internal dla. The Annals of Probability 41(3A), 1160–1179 (2013). https://doi.org/10.1214/11-aop735

5. Diaconis, P., Fulton, W.: A Growth Model, a Game, an Algebra, Lagrange Inversion, and Characteristic Classes. Stanford University, Department of Statistics (1991). https://books.google.com/books?id=ojLtHgAACAAJ

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