Highly Efficient Spin-Orbit Torque Switching using Bulk-Insulating Topological Insulator Bi<sub>2</sub>Se<sub>3</sub>
ORAL
Abstract
Topological insulators (TIs) have shown great potential for efficient spin-orbit torque (SOT) switching of adjacent ferromagnets due to spin-momentum locking of their surface states. However, a substantial bulk-conducting channel in many TIs limits their full potential for low-power operations. Here we synthesize bulk-insulating Bi2Se3 on (BiIn)2Se3/In2Se3 buffer layers by molecular beam epitaxy (as confirmed by transport and angle-resolved photoemission spectroscopy (ARPES) measurements), and compare the SOT switching efficiencies of NiFe to that of NiFe on bulk-conducting Bi2Se3 films using Kerr rotation and second harmonic Hall measurements. We find a 4-fold reduction in critical switching current density and 5-10-fold enhancement in SOT efficiency for the bulk-insulating Bi2Se3, unambiguously demonstrating that Fermi level tuning can significantly enhance switching performance. This is attributed to current flowing predominantly through the top TI surface state layer, where the generated spins are in close proximity to the NiFe interface. In addition, our TI/FM heterostructures are grown entirely in situ without air exposure, where the clean interface can facilitate strong hybridization and the formation of “descendent states” that inherit the spin-momentum locking from the original TI surface states, leading to enhanced SOT efficiency for both structures.
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Presenters
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Connie H Li
United States Naval Research Laboratory
Authors
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Connie H Li
United States Naval Research Laboratory
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Mehmet A Noyan
United States Naval Research Laboratory
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Xiaohang Zhang
United States Naval Research Laboratory
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Jisoo Moon
United States Naval Research Laboratory (NRL), The City College of New York
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Enrique Cobas
United States Naval Research Laboratory
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Mark I Lohmann
United States Naval Research Laboratory
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Qiang Zou
West Virginia University
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Lian Li
West Virginia University
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Berend Thomas Jonker
United States Naval Research Laboratory
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Olaf M Van T Erve
United States Naval Research Laboratory