Open Access
2021 Metastability in a lattice gas with strong anisotropic interactions under Kawasaki dynamics
Simone Baldassarri, Francesca Romana Nardi
Author Affiliations +
Electron. J. Probab. 26: 1-66 (2021). DOI: 10.1214/21-EJP701

Abstract

In this paper we analyze metastability and nucleation in the context of a local version of the Kawasaki dynamics for the two-dimensional strongly anisotropic Ising lattice gas at very low temperature. Let Λ={0,1,..,L}2Z2 be a finite box. Particles perform simple exclusion on Λ, but when they occupy neighboring sites they feel a binding energy U1<0 in the horizontal direction and U2<0 in the vertical one. Thus the Kawasaki dynamics is conservative inside the volume Λ. Along each bond touching the boundary of Λ from the outside to the inside, particles are created with rate ρ=eΔβ, while along each bond from the inside to the outside, particles are annihilated with rate 1, where β is the inverse temperature and Δ>0 is an activity parameter. Thus, the boundary of Λ plays the role of an infinite gas reservoir with density ρ. We consider the parameter regime U1>2U2 also known as the strongly anisotropic regime. We take Δ(U1,U1+U2) and we prove that the empty (respectively full) configuration is a metastable (respectively stable) configuration. We consider the asymptotic regime corresponding to finite volume in the limit of large inverse temperature β. We investigate how the transition from empty to full takes place. In particular, we estimate in probability, expectation and distribution the asymptotic transition time from the metastable configuration to the stable configuration. Moreover, we identify the size of the critical droplets, as well as some of their properties. For the weakly anisotropic model corresponding to the parameter regime U1<2U2, analogous results have already been obtained. We observe very different behavior in the weakly and strongly anisotropic regimes. We find that the Wulff shape, i.e., the shape minimizing the energy of a droplet at fixed volume, is not relevant for the critical configurations.

Dedication

To our friend and colleague Carlo Casolo

Acknowledgments

F.R.N. was partially supported by the Netherlands Organisation for Scientific Research (NWO) [Gravitation Grant number 024.002.003–NETWORKS].

Citation

Download Citation

Simone Baldassarri. Francesca Romana Nardi. "Metastability in a lattice gas with strong anisotropic interactions under Kawasaki dynamics." Electron. J. Probab. 26 1 - 66, 2021. https://doi.org/10.1214/21-EJP701

Information

Received: 9 July 2020; Accepted: 7 September 2021; Published: 2021
First available in Project Euclid: 3 December 2021

Digital Object Identifier: 10.1214/21-EJP701

Subjects:
Primary: 60J10 , 60K35 , 82C20
Secondary: 82C22 , 82C26

Keywords: critical droplet , Kawasaki dynamics , large deviations , lattice gas , metastability

Vol.26 • 2021
Back to Top