Magnetization ground states are studied in toroidal nanomagnets. The energetics associated to the ferromagnetic, vortex and onion-like configurations are explicitly computed. The analysis reveals that the vortex appears to be the most prominent of such states, minimizing total energy in every torus with internal radius r≳10nm (for Permalloy). For r≲10nm the vortex remains the most favorable pattern whenever R/ℓex≳1.5 (R is the torus external radius and ℓex is the exchange length), being substituted by the ferromagnetic state whenever R/ℓex≲1.5.
Cite
@article{arxiv.1004.2689,
title = {Ground-state configurations in ferromagnetic nanotori},
author = {Vagson L. Carvalho-Santos and Winder A. Moura-Melo and Afranio R. Pereira},
journal= {arXiv preprint arXiv:1004.2689},
year = {2011}
}