From incommensurate bilayer heterostructures to Allen-Cahn: An exact thermodynamic limit
Mathematical Physics
2024-06-28 v4 Mesoscale and Nanoscale Physics
Materials Science
Analysis of PDEs
Dynamical Systems
math.MP
Abstract
We give a complete and rigorous derivation of the mechanical energy for twisted 2D bilayer heterostructures without any approximation beyond the existence of an empirical many-body site energy. Our results apply to both the continuous and discontinuous continuum limit. Approximating the intralayer Cauchy-Born energy by linear elasticity theory and assuming an interlayer coupling via pair potentials, our model reduces to a modified Allen-Cahn functional. We rigorously control the error, and, in the case of sufficiently smooth lattice displacements, provide a rate of convergence for twist angles satisfying a Diophantine condition.
Keywords
Cite
@article{arxiv.2305.18186,
title = {From incommensurate bilayer heterostructures to Allen-Cahn: An exact thermodynamic limit},
author = {Michael Hott and Alexander B. Watson and Mitchell Luskin},
journal= {arXiv preprint arXiv:2305.18186},
year = {2024}
}
Comments
67 pages, 9 figures, V4: Streamlined presentation