Optimal field-free magnetization switching via spin-orbit torque on the surface of a topological insulator

dc.contributor.authorMiranda, Ivan P.
dc.contributor.authorKwiatkowski, Grzegorz J.
dc.contributor.authorHolmqvist, Cecilia M.
dc.contributor.authorCanali, Carlo M.
dc.contributor.authorLobanov, Igor S.
dc.contributor.authorUzdin, Valery M.
dc.contributor.authorManolescu, Andrei
dc.contributor.authorBessarab, Pavel F.
dc.contributor.authorErlingsson, Sigurdur I.
dc.contributor.departmentDepartment of Engineering
dc.date.accessioned2026-10-02T13:03:01Z
dc.date.available2026-10-02T13:03:01Z
dc.date.issued2025-12
dc.descriptionPublisher Copyright: © The Author(s) 2025.en
dc.description.abstractWe present an optimal field-free protocol for current-induced switching of a perpendicularly magnetized ferromagnetic insulator nanoelement on the surface of a topological insulator. The time dependence of in-plane components of the surface current, which drives the magnetization reversal via the Dirac spin-orbit torque with minimal Joule heating, is derived analytically as a function of the switching time and material properties. Our analysis identifies that energy-efficient switching is achieved for vanishing damping-like torque. The optimal reversal time that balances switching speed and energy efficiency is determined. When we compare topological insulators to heavy-metal systems, we find similar switching costs for the optimal ratio between the spin-orbit torque coefficients. However, topological insulators offer the advantage of tunable material properties. Finally, we propose a robust and efficient simplified switching protocol using a down-chirped rotating current pulse, tailored to realistic ferromagnetic/topological insulator systems.en
dc.description.versionPeer revieweden
dc.format.extent962947
dc.format.extent
dc.identifier.citationMiranda, I P, Kwiatkowski, G J, Holmqvist, C M, Canali, C M, Lobanov, I S, Uzdin, V M, Manolescu, A, Bessarab, P F & Erlingsson, S I 2025, 'Optimal field-free magnetization switching via spin-orbit torque on the surface of a topological insulator', npj Spintronics, vol. 3, no. 1, 21. https://doi.org/10.1038/s44306-025-00085-0en
dc.identifier.doi10.1038/s44306-025-00085-0
dc.identifier.issn2948-2119
dc.identifier.other251010351
dc.identifier.other701c26c9-86c9-4d1c-8bd7-a4bd4a0cf0f0
dc.identifier.other105010896088
dc.identifier.urihttps://hdl.handle.net/20.500.11815/8510
dc.language.isoen
dc.relation.ispartofseriesnpj Spintronics; 3(1)en
dc.relation.urlhttps://www.scopus.com/pages/publications/105010896088en
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.subjectElectronic, Optical and Magnetic Materialsen
dc.subjectMaterials Science (miscellaneous)en
dc.subjectCondensed Matter Physicsen
dc.subjectSurfaces and Interfacesen
dc.titleOptimal field-free magnetization switching via spin-orbit torque on the surface of a topological insulatoren
dc.type/dk/atira/pure/researchoutput/researchoutputtypes/contributiontojournal/articleen

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