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Large interfacial Rashba interaction and resultant dominating field- like torque in atomically thin metallic heterostructures

  • Sachin Krishnia
  • , Nicolas Sebe
  • , Yanis Sassi
  • , Fernando Ajejas
  • , Nicolas Reyren
  • , Sophie Collin
  • , Thibaud Denneulin
  • , András Kovács
  • , Rafal E. Dunin-Borkowski
  • , Albert Fert
  • , Jean Marie George
  • , Henri Jaffres
  • , Vincent Cros
  • Université Paris-Saclay
  • Research Centre Julich

Résultats de recherche: Le chapitre dans un livre, un rapport, une anthologie ou une collectionContribution à une conférenceRevue par des pairs

Résumé

The hallmark of spintronics in the last decade has been the ability of spin-orbit interactions to convert a charge current into the spin current, and vice versa, most often in the bulk of heavy metal thin films. Here, we demonstrate how the insertion of a light metal element interface profoundly affects both the nature of spin-orbit torque and its efficiency in terms of damping-like (HDL) and field-like (HFL) effective fields in an ultrathin Co film. Indeed, we measure unexpectedly an HFL/HDL ratio much larger than 1 (up to 2.5) by inserting a nanometer-thin Al metallic layer in Pt|Co|Al|Pt as compared to a similar stacking including Cu instead of Al. From our modelling, these results strongly evidence the presence of a large Rashba interaction at Co|Al interface generating a giant HFL, which is not expected from a metallic interface. The occurrence of such enhanced torques from an interfacial origin is further validated by demonstrating current-induced magnetization reversal showing a significant decrease in the critical current for switching.

langue originaleAnglais
titre2023 IEEE International Magnetic Conference - Short Papers, INTERMAG Short Papers 2023 - Proceedings
EditeurInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronique)9798350338362
Les DOIs
étatPublié - 1 janv. 2023
Modification externeOui
Evénement2023 IEEE International Magnetic Conference - Short Papers, INTERMAG Short Papers 2023 - Sendai, Japon
Durée: 15 mai 202319 mai 2023

Série de publications

Nom2023 IEEE International Magnetic Conference - Short Papers, INTERMAG Short Papers 2023 - Proceedings

Une conférence

Une conférence2023 IEEE International Magnetic Conference - Short Papers, INTERMAG Short Papers 2023
Pays/TerritoireJapon
La villeSendai
période15/05/2319/05/23

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