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Magnetic Proximity Effects in Iron Germanium Telluride/Platinum Heterostructures
Stasiu T Chyczewski1, Suji Park2, Wenjuan Zhu1
1Department of Electrical and Computer Engineering, The Grainger College of Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.
Abstract:
Van der Waals (vdW) magnetic materials have attracted considerable attention for use in spintronic devices such as those controlled by spin-orbit torque (SOT). Such SOT-driven devices are typically fabricated by bringing a vdW magnet in proximity to a spin-charge conversion layer to achieve current-driven magnetization switching. Here, we show that such structures fabricated with iron germanium telluride (FGT) and platinum can exhibit emergent magnetic properties, which we attribute to magnetic proximity effects at the FGT/Pt interface. These changes manifest as increased perpendicular magnetic anisotropy and the emergence of additional magnetization reversal steps as probed by magneto-transport, with the most significant changes appearing in thinner flakes. The behavior was found to be robust and consistently appeared in samples made with crystals from different vendors. Our results demonstrate the potential for engineering vdW spintronic systems through magnetic proximity effects.
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