The Origin of Mean-Field Behavior in an Elastic Ising Model
Statistical Mechanics
2020-07-15 v1 Materials Science
Soft Condensed Matter
Abstract
Simple elastic models of spin-crossover compounds are known empirically to exhibit classical critical behavior. We demonstrate how the long-ranged interactions responsible for this behavior arise naturally upon integrating out mechanical fluctuations of such a model. A mean field theory applied to the resulting effective Hamiltonian quantitatively accounts for both thermodynamics and kinetics observed in computer simulations, including a barrier to magnetization reversal that grows extensively with system size. For nanocrystals, which break translational symmetry, a straightforward extension of mean field theory yields similarly accurate results.
Keywords
Cite
@article{arxiv.2004.10373,
title = {The Origin of Mean-Field Behavior in an Elastic Ising Model},
author = {Layne B. Frechette and Christoph Dellago and Phillip L. Geissler},
journal= {arXiv preprint arXiv:2004.10373},
year = {2020}
}
Comments
Main text: 9 pages, 10 figures; Supplemental Material: 11 pages, 13 figures