4.8 Article

Field-free switching of perpendicular magnetization through spin-orbit torque in antiferromagnet/ferromagnet/oxide structures

Journal

NATURE NANOTECHNOLOGY
Volume 11, Issue 10, Pages 878-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NNANO.2016.109

Keywords

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Funding

  1. Creative Materials Discovery Program through the National Research Foundation of Korea [NRF-2015M3D1A1070465]
  2. NRF [NRF-2014R1A2A1A11051344, NRF-2013R1A2A2A01013188, NRF-2013R1A2A2A05006237, NRF-2013R1A2A2A01067144]
  3. KIST [2E26380]
  4. National Research Foundation of Korea [2014R1A2A1A11051344, 2013R1A1A2058046] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Spin-orbit torques arising from the spin-orbit coupling of non-magnetic heavy metals allow electrical switching of perpendicular magnetization. However, the switching is not purely electrical in laterally homogeneous structures. An extra in-plane magnetic field is indeed required to achieve deterministic switching, and this is detrimental for device applications. On the other hand, if antiferromagnets can generate spin-orbit torques, they may enable all-electrical deterministic switching because the desired magnetic field may be replaced by their exchange bias. Here we report sizeable spin-orbit torques in IrMn/CoFeB/MgO structures. The antiferromagnetic IrMn layer also supplies an in-plane exchange bias field, which enables all-electrical deterministic switching of perpendicular magnetization without any assistance from an external magnetic field. Together with sizeable spin-orbit torques, these features make antiferromagnets a promising candidate for future spintronic devices. We also show that the signs of the spin-orbit torques in various IrMn-based structures cannot be explained by existing theories and thus significant theoretical progress is required.

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