Publication | Closed Access
Evidence for Magnetic Skyrmions at the Interface of Ferromagnet/Topological-Insulator Heterostructures
93
Citations
44
References
2019
Year
EngineeringTopological Quantum StateTopological MagnetismMagnetismNanoelectronicsSuperconductivityQuantum MaterialsMagnetic Topological InsulatorSkyrmion PhysicsMaterials ScienceTopological Hall EffectPhysicsTopological MaterialQuantum MagnetismSpintronicsNatural SciencesTopological InsulatorApplied PhysicsCondensed Matter PhysicsMagnetic SkyrmionsTopological HeterostructuresSkyrmions
The heterostructures of the ferromagnet (Cr2Te3) and topological insulator (Bi2Te3) have been grown by molecular beam epitaxy. The topological Hall effect as evidence of the existence of magnetic skyrmions has been observed in the samples in which Cr2Te3 was grown on top of Bi2Te3. Detailed structural characterizations have unambiguously revealed the presence of intercalated Bi bilayer nanosheets right at the interface of those samples. The atomistic spin-dynamics simulations have further confirmed the existence of magnetic skyrmions in such systems. The heterostructures of ferromagnet and topological insulator that host magnetic skyrmions may provide an important building block for next generation of spintronics devices.
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