English

Frustration and thermalisation in an artificial magnetic quasicrystal

Disordered Systems and Neural Networks 2019-11-07 v3

Abstract

We have created and studied artificial magnetic quasicrystals based on Penrose tiling patterns of interacting nanomagnets that lack the translational symmetry of spatially periodic artificial spin ices. Vertex-level degeneracy and frustration induced by the network topology of the Penrose pattern leads to a low energy configuration that we propose as a ground state. Topologically induced emergent frustration means that this ground state cannot be constructed from vertices in their ground states. It has two parts, a quasi-one-dimensional rigid "skeleton" that spans the entire pattern and is capable of long-range order, and "flippable" clusters of macrospins within it. These lead to macroscopic degeneracy for the array as a whole. Magnetic force microscopy imaging of Penrose tiling arrays revealed superdomains that are larger for more strongly coupled arrays. The superdomain size is larger after AC-demagnetisation and especially after annealing the array above its blocking temperature.

Keywords

Cite

@article{arxiv.1703.04792,
  title  = {Frustration and thermalisation in an artificial magnetic quasicrystal},
  author = {Dong Shi and Zoe Budrikis and Aaron Stein and Sophie A. Morley and Peter D. Olmsted and Gavin Burnell and Christopher H. Marrows},
  journal= {arXiv preprint arXiv:1703.04792},
  year   = {2019}
}