4.8 Article

Ionic Modulation of the Interfacial Magnetism in a Bilayer System Comprising a Heavy Metal and a Magnetic Insulator for Voltage-Tunable Spintronic Devices

Journal

ADVANCED MATERIALS
Volume 30, Issue 40, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.201802902

Keywords

interfaces; ionic liquid gating; magnetism; magnetoelectric coupling; yttrium iron garnets

Funding

  1. Natural Science Foundation of China [51472199, 51602244, 11534015]
  2. Natural Science Foundation of Shaanxi Province [2015JM5196]
  3. National 111 Project of China [B14040]
  4. Fundamental Research Funds for the Central Universities
  5. International Joint Laboratory for Micro/Nano Manufacturing and Measurement Technologies
  6. China Recruitment Program of Global Youth Experts
  7. Natural Sciences and Engineering Research Council (NSERC) of Canada

Ask authors/readers for more resources

The voltage modulation of yttrium iron garnet (YIG) is of practical and theoretical significance; due to its advantages of compactness, high-speed response, and energy efficiency, it can be used for various spintronic applications, including spin-Hall, spin-pumping, and spin-Seebeck effects. In this study, a significant ferromagnetic resonance change is achieved within the YIG/Pt bilayer heterostructures uisng ionic modulation, which is accomplished by modifying the interfacial magnetism in the deposited capping platinum layer. With a small voltage bias of 4.5 V, a large ferromagnetic field shift of 690 Oe is achieved in heterostructures of YIG (13 nm)/Pt (3 nm)/(ionic liquid, IL)/(Au capacitor). The remarkable magnetoelectric (ME) tunability comes from the additional and voltage-induced ferromagnetic ordering, caused by uncompensated d-orbital electrons in the Pt metal layer. Confirmed by first-principle calculations, this finding paves the way for novel voltage-tunable YIG-based spintronics.

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