4.3 Article

Inhomogeneous ferromagnetism mimics signatures of the topological Hall effect in SrRuO3 films

期刊

PHYSICAL REVIEW MATERIALS
卷 4, 期 10, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevMaterials.4.104410

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资金

  1. European Research Council [669550]
  2. European Union's Horizon 2020 research and innovation programme [823717-ESTEEM3]
  3. National Science Foundation [Platform for Accelerated Realization, Analysis and Discovery of Interface Materials (PARADIM)] [DMR-1539918]
  4. W.M. Keck Foundation
  5. Gordon and Betty Moore Foundation's EPiQS Initiative [GBMF3850, GBMF9073]
  6. National Science Foundation Graduate Research Fellowship Program [DGE-1650441]

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Topological transport phenomena in magnetic materials are a major topic of current condensed matter research. One of the most widely studied phenomena is the topological Hall effect (THE), which is generated via spin-orbit interactions between conduction electrons and topological spin textures such as skyrmions. We report a comprehensive set of Hall effect and magnetization measurements on epitaxial films of the prototypical ferromagnetic metal SrRuO3 the magnetic and transport properties of which were systematically modulated by varying the concentration of Ru vacancies. We observe Hall effect anomalies that closely resemble signatures of the THE, but a quantitative analysis demonstrates that they result from inhomogeneities in the ferromagnetic magnetization caused by a nonrandom distribution of Ru vacancies. As such inhomogeneities are difficult to avoid and are rarely characterized independently, our results call into question the identification of topological spin textures in numerous prior transport studies of quantum materials, heterostructures, and devices. Firm conclusions regarding the presence of such textures must meet stringent conditions such as probes that couple directly to the noncollinear magnetization on the atomic scale.

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