English

Chiral magnetic textures in Ir/Fe/Co/Pt multilayers: Evolution and topological Hall signature

Mesoscale and Nanoscale Physics 2019-03-19 v2 Materials Science Strongly Correlated Electrons

Abstract

Skyrmions are topologically protected, two-dimensional, localized hedgehogs and whorls of spin. Originally invented as a concept in field theory for nuclear interactions, skyrmions are central to a wide range of phenomena in condensed matter. Their realization at room temperature (RT) in magnetic multilayers has generated considerable interest, fueled by technological prospects and the access granted to fundamental questions. The interaction of skyrmions with charge carriers gives rise to exotic electrodynamics, such as the topological Hall effect (THE), the Hall response to an emergent magnetic field, a manifestation of the skyrmion Berry-phase. The proposal that THE can be used to detect skyrmions needs to be tested quantitatively. For that it is imperative to develop comprehensive understanding of skyrmions and other chiral textures, and their electrical fingerprint. Here, using Hall transport and magnetic imaging, we track the evolution of magnetic textures and their THE signature in a technologically viable multilayer film as a function of temperature (TT) and out-of-plane applied magnetic field (HH). We show that topological Hall resistivity (ρTH\rho_\mathrm{TH}) scales with the density of isolated skyrmions (nskn_\mathrm{sk}) over a wide range of TT, confirming the impact of the skyrmion Berry-phase on electronic transport. We find that at higher nskn_\mathrm{sk} skyrmions cluster into worms which carry considerable topological charge, unlike topologically-trivial spin spirals. While we establish a qualitative agreement between ρTH(H,T)\rho_\mathrm{TH}(H,T) and areal density of topological charge nT(H,T)n_\mathrm{T}(H,T), our detailed quantitative analysis shows a much larger ρTH\rho_\mathrm{TH} than the prevailing theory predicts for observed nTn_\mathrm{T}.

Keywords

Cite

@article{arxiv.1708.04084,
  title  = {Chiral magnetic textures in Ir/Fe/Co/Pt multilayers: Evolution and topological Hall signature},
  author = {M. Raju and A. Yagil and Anjan Soumyanarayanan and Anthony K. C. Tan and A. Almoalem and O. M. Auslaender and C. Panagopoulos},
  journal= {arXiv preprint arXiv:1708.04084},
  year   = {2019}
}

Comments

Major revision of the original version. The extensive Supplementary Information is available upon request