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dc.contributor.authorBeaulieu, Guillaume
dc.contributor.authorLuo, Zhaochu
dc.contributor.authorRaposo Funcia, Víctor Javier 
dc.contributor.authorHeyderman, Laura J.
dc.contributor.authorGambardella, Pietro
dc.contributor.authorMartínez Vecino, Eduardo 
dc.contributor.authorHrabec, Aleš
dc.date.accessioned2025-05-26T10:08:45Z
dc.date.available2025-05-26T10:08:45Z
dc.date.issued2024
dc.identifier.citationGuillaume Beaulieu, Zhaochu Luo, Víctor Raposo, Laura J. Heyderman, Pietro Gambardella, Eduardo Martínez, Aleš Hrabec; Control of spin–orbit torque-driven domain nucleation through geometry in chirally coupled magnetic tracks. Appl. Phys. Lett. 30 September 2024; 125 (14): 142401. https://doi.org/10.1063/5.0224146es_ES
dc.identifier.issn0003-6951
dc.identifier.urihttp://hdl.handle.net/10366/165855
dc.description.abstract[EN]The interfacial Dzyaloshinskii–Moriya interaction (DMI) can be exploited in magnetic thin films to realize lateral chirally coupled systems, providing a way to couple different sections of a magnetic racetrack and realize interconnected networks of magnetic logic gates. Here, we systematically investigate the interplay between spin–orbit torques, chiral coupling, and the device design in domain wall racetracks. We show that the current-induced domain nucleation process can be tuned between single-domain nucleation and repeated nucleation of alternate domains by changing the orientation of an in-plane patterned magnetic region within an out-of-plane magnetic racetrack. Furthermore, by combining experiments and micromagnetic simulations, we show that the combination of damping-like and field-like spin–orbit torques with DMIresults in selective domain wall injection in one of two arms of a Y-shaped device depending on the current density. Such an element constitutes the basis of domain wall based demultiplexer, which is essential for distributing a single input to any one of the multiple outputs in logic circuits. Our results provide input for the design of reliable and multifunctional domain wall circuits based on chirally coupled interfaces.es_ES
dc.description.sponsorshipThe authors acknowledge funding from the National Key Research and Development Program of China (No. 2022YFA1203904) and the National Natural Science Foundation of China (No. 52271160). The work by E.M. and V.R. was supported by Projects No. SA114P20 from Junta de Castilla y Leon, Project PID2020117024GB-C41, funded by the Spanish Ministerio de Ciencia e Innovacion (MCIN/AEI/10.13039/501100011033) and project MagnEFi, Grant Agreement No. 860060 (H2020-MSCA-ITNARTICLE pubs.aip.org/aip/apl 2019), funded by the European Commission and Project PID2023150853NB-C31 funded by MCIN/AEI (10.13039/501100011033) and FEDER, UE.es_ES
dc.format.mimetypeapplication/pdf
dc.language.isoenges_ES
dc.publisherAmerican Institute of Physicses_ES
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internacional*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/*
dc.subjectMagnetismes_ES
dc.subjectComputational physicses_ES
dc.titleControl of spin–orbit torque-driven domain nucleation through geometry in chirally coupled magnetic trackses_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.relation.publishversionhttps://doi.org/10.1063/5.0224146es_ES
dc.identifier.doi10.1063/5.0224146
dc.relation.projectIDSA114P20es_ES
dc.relation.projectIDPID2020117024GB-C41es_ES
dc.relation.projectIDPID2023150853NB-C31es_ES
dc.relation.projectID2022YFA1203904es_ES
dc.rights.accessRightsinfo:eu-repo/semantics/embargoedAccesses_ES
dc.identifier.essn1077-3118
dc.journal.titleApplied Physics Letterses_ES
dc.volume.number125es_ES
dc.issue.number14es_ES
dc.type.hasVersioninfo:eu-repo/semantics/publishedVersiones_ES


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