Highly efficient spin-orbit torque switching in Pt/Li<sub>0.5</sub>Al<sub>1.0</sub>Fe<sub>1.5</sub>O<sub>4</sub> bilayers
ORAL
Abstract
Spin-wave-based electronics promise fast electrical switching of magnetization but require the isotropic excitation of spin waves and minimization of losses associated with spin-charge conversion. In this regard, spin-orbit torque (SOT) has been identified as a key phenomenon that may enable the coherent excitation of spin waves. Previously, we demonstrated the synthesis of the novel spinel oxide insulator Li0.5Al1.0Fe1.5O4 (LAFO) films on (001) oriented MgGa2O4 that possess PMA and a Gilbert damping parameter on the order of 10-3. In this talk, we demonstrate current induced SOT switching of the magnetization in Pt/LAFO bilayers at current densities as low as 6 x 105 A/cm^2, one of the lowest reported for a PMA ferrimagnetic insulator. Using second harmonic Hall measurements, we elucidate the origin of this low current density by quantifying a high damping-like SOT efficiency of 0.54. This is much larger than the typical value of < 0.1 in other Pt/ferromagnet systems. The combination of PMA, low damping, and efficient SOT switching make LAFO a promising system for future spintronics applications.
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Publication: "Ultra-Low Damping Nanometer-thick Spinel Ferrite Thin Films with Perpendicular Magnetic Anisotropy for Spin Wave Spintronics", in preparation
Presenters
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Xin Yu Zheng
Stanford University
Authors
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Xin Yu Zheng
Stanford University
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Sanyum Channa
Stanford University, Stanford Univ
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Lauren Riddiford
Stanford University
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Jacob J Wisser
Stanford University
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Egecan Cogulu
New York Univ NYU, New York University (NYU)
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Zbigniew Galazka
Leibniz-Institut für Kristallzüchtung
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Andrew D Kent
New York Univ NYU
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Yuri Suzuki
Stanford University