Topological Hall effect at above room temperature in heterostructures composed of a magnetic insulator and a heavy metal
arXiv:1904.07107 · doi:10.1038/s41928-019-0246-x
Abstract
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny information carriers that do not wear out. Magnetic skyrmions are emerging as a potential carrier since they are topologically robust nanoscale spin textures that can be manipulated with ultralow current density. To date, most of skyrmions are reported in metallic films, which suffer from additional Ohmic loss and thus high energy dissipation. Therefore, skyrmions in magnetic insulators are of technological importance for low-power information processing applications due to their low damping and the absence of Ohmic loss. Moreover, they attract fundamental interest in studying various magnon-skyrmion interactions11. Skyrmions have been observed in one insulating material Cu2OSeO3 at cryogenic temperatures, where they are stabilized by bulk Dzyaloshinskii-Moriya interaction. Here, we report the observation of magnetic skyrmions that survive above room temperature in magnetic insulator/heavy metal heterostructures, i.e., thulium iron garnet/platinum. The presence of these skyrmions results from the Dzyaloshinskii-Moriya interaction at the interface and is identified by the emergent topological Hall effect. Through tuning the magnetic anisotropy via varying temperature, we observe skyrmions in a large window of external magnetic field and enhanced stability of skyrmions in the easy-plane anisotropy regime. Our results will help create a new platform for insulating skyrmion-based room temperature low dissipation spintronic applications.
Initially submitted version on 10/03/2018 with a revised arXiv webpage title
References in corpus (7)
- Additive interfacial chiral interaction in multilayers for stabilization of small individual skyrmion at room temperature
- Theory of spin Hall magnetoresistance
- Interface-driven topological Hall effect in SrRuO-SrIrO bilayer
- Thermally Driven Ratchet Motion of Skyrmion Microcrystal and Topological Magnon Hall Effect
- Magnon-skyrmion scattering in chiral magnets
- Anomalous Hall hysteresis in Tm3Fe5O12/Pt with strain-induced perpendicular magnetic anisotropy
- Magnonic quantum Hall effect and Wiedemann-Franz law
Cited by in corpus (17)
- Spin Insulatronics
- Chiral spin-wave velocities induced by all-garnet interfacial Dzyaloshinskii-Moriya interaction in ultrathin yttrium iron garnet films
- Current-driven dynamics and ratchet effect of skyrmion bubbles in a ferrimagnetic insulator
- Topological Hall Effect in a Topological Insulator Interfaced with a Magnetic Insulator
- Large topological Hall effect near room temperature in noncollinear ferromagnet LaMn2Ge2 single crystal
- Colossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions
- Observation of colossal topological Hall effect in noncoplanar ferromagnet Cr5Te6 thin films
- Identifying the origin of the non-monotonic thickness dependence of spin-orbit torques and interfacial Dzyaloshinskii-Moriya interaction in a ferrimagnetic insulator heterostructure
- Giant 2D Skyrmion Topological Hall Effect with Ultrawide Temperature Window and Low-Current Manipulation in 2D Room-Temperature Ferromagnetic Crystals
- Oxygen Vacancy-Induced Topological Hall effect in a Nonmagnetic Band Insulator
- Magnetic Switching in Monolayer 2D Diluted Magnetic Semiconductors via Spin-to- Spin Conversion
- Intricate magnetic interactions and topological Hall effect observed in itinerant room-temperature layered ferromagnet Cr0.83Te
- Significant Unconventional Anomalous Hall Effect in Heavy Metal/Antiferromagnetic Insulator Heterostructures
- Room Temperature Strong Orbital Moments in Perpendicularly Magnetized Magnetic Insulator
- Emergent giant topological Hall effect in twisted Fe3GeTe2 metallic system
- Non-uniform magnetization profile in ferromagnetic heterostructures leading to topological Hall effect like signatures
- Emergence of a spin Hall topological Hall effect in the non-collinear phase of the ferrimagnetic insulator terbium-iron garnet