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Mechanism of Spin-Orbit Torques in Platinum Oxide Systems

  • Jayshankar Nath*
  • , Alexandru Vladimir Trifu
  • , Mihai Sebastian Gabor
  • , Ali Hallal
  • , Stephane Auffret
  • , Sebastien Labau
  • , Aymen Mahjoub
  • , Edmond Chan
  • , Avinash Kumar Chaurasiya
  • , Amrit Kumar Mondal
  • , Haozhe Yang
  • , Eva Schmoranzerova
  • , Mohamed Ali Nsibi
  • , Isabelle Joumard
  • , Anjan Barman
  • , Bernard Pelissier
  • , Mairbek Chshiev
  • , Gilles Gaudin
  • , Ioan Mihai Miron*
  • *此作品的通讯作者
  • SPINTEC - Spin in Electronics Research
  • Technical University of Cluj-Napoca
  • Université Grenoble Alpes
  • S N Bose National Centre for Basic Science
  • Institut universitaire de France

科研成果: 期刊稿件文章同行评审

摘要

Spin-Orbit Torque (SOT) Magnetic Random-Access Memories (MRAM) have shown promising results toward the realization of fast, non-volatile memory systems. Oxidation of the heavy-metal (HM) layer of the SOT-MRAM has been proposed as a method to increase its energy efficiency. But the results are widely divergent due to the difficulty in controlling the HM oxidation because of its low enthalpy of formation. Here, these differences are reconciled by performing a gradual oxidation procedure, which allows correlating the chemical structure to the physical properties of the stack. As an HM layer, Pt is chosen because of the strong SOT and the low enthalpy of formation of its oxides. The evidence of an oxide inversion layer at the ferromagnet (FM)/HM interface is found: the oxygen is drawn into the FM, while the HM remains metallic near the interface. Moreover, the oxygen migrates in the volume of the FM layer rather than being concentrated at the interface. Consequently, it is found that the intrinsic magnitude of the SOT is unchanged compared to the fully metallic structure. The previously reported apparent increase of SOTs is not intrinsic to platinum oxide and instead arises from systemic changes produced by oxidation.

源语言英语
文章编号2101335
期刊Advanced Electronic Materials
8
7
DOI
出版状态已出版 - 7月 2022
已对外发布

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