English

Skyrmion Lattice in Two-Dimensional Chiral Magnet

Other Condensed Matter 2011-02-28 v2

Abstract

We develop a theory of the magnetic field-induced formation of Skyrmion crystal state in chiral magnets in two spatial dimensions, motivated by the recent discovery of the Skyrmionic phase of magnetization in thin film of Fe0.5_{0.5}Co0.5_{0.5}Si and in the A-phase of MnSi. Ginzburg-Landau functional of the chiral magnet re-written in the CP1^1 representation is shown to be a convenient framework for the analysis of the Skyrmion states. Phase diagram of the model at zero temperature gives a sequence of ground states, helical spin \rightarrow Skyrme crystal \rightarrow ferromagnet, as the external field BB increases, in good accord with the thin-film experiment. In close analogy with Abrikosov's derivation of the vortex lattice solution in type-II superconductor, the CP1^1 mean-field equation is solved and shown to reproduce the Skyrmion crystal state.

Keywords

Cite

@article{arxiv.1006.3973,
  title  = {Skyrmion Lattice in Two-Dimensional Chiral Magnet},
  author = {Jung Hoon Han and Jiadong Zang and Zhihua Yang and Jin-Hong Park and Naoto Nagaosa},
  journal= {arXiv preprint arXiv:1006.3973},
  year   = {2011}
}

Comments

10 pages, 7 figures