English

High-degeneracy Potts coarsening

Computational Physics 2021-01-20 v1

Abstract

I examine the fate of a kinetic Potts ferromagnet with a high ground-state degeneracy that undergoes a deep quench to zero-temperature. I consider single spin-flip dynamics on triangular lattices of linear dimension 8L1288 \le L \le 128 and set the number of spin states qq equal to the number of lattice sites L×LL \times L. The ground state is the most abundant final state, and is reached with probability 0.71\approx 0.71. Three-hexagon states occur with probability 0.26\approx 0.26, and hexagonal tessellations with more than three clusters form with probabilities of O(103)\mathcal{O}(10^{-3}) or less. Spanning stripe states -- where the domain walls run along one of the three lattice directions -- appear with probability 0.03\approx 0.03. "Blinker" configurations, which contain perpetually flippable spins, also emerge, but with a probability that is vanishingly small with the system size.

Keywords

Cite

@article{arxiv.2101.02425,
  title  = {High-degeneracy Potts coarsening},
  author = {James Denholm},
  journal= {arXiv preprint arXiv:2101.02425},
  year   = {2021}
}
R2 v1 2026-06-23T21:52:15.515Z