The ability to control the spin current injection has been explored on a hybrid magnetoelectric system consisting of a (011)-cut ferroelectric lead magnesium niobate-lead titanate (PMNT) single crystal, a ferromagnetic FePt alloy, and a metallic Pt. With this PMNT/FePt/Pt structure we have been able to control the magnetic field position or the microwave excitation frequency at which the spin pumping phenomenon between FePt and Pt occurs. We demonstrate that the magnetoelectric heterostructure operating in the L-T (longitudinal magnetized-transverse polarized) mode couples the PMNT crystal to the magnetostrictive FePt/Pt bilayer, displaying a strong magnetoelectric coefficient of ∼140 Oe cm kV−1. Our results show that this mechanism can be effectively exploited as a tunable spin current intensity emitter and open the possibility to create an oscillating or a bistable switch to effectively manipulate spin currents.
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13 June 2016
Research Article|
June 15 2016
Magnetoelectric control of spin currents
J. E. Gómez;
J. E. Gómez
Centro Atómico Bariloche,
Instituto de Nanociencia y Nanotecnología (CNEA) and Conicet
, 8400 Bariloche, Río Negro, Argentina
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J. M. Vargas;
J. M. Vargas
Centro Atómico Bariloche,
Instituto de Nanociencia y Nanotecnología (CNEA) and Conicet
, 8400 Bariloche, Río Negro, Argentina
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L. Avilés-Félix;
L. Avilés-Félix
Centro Atómico Bariloche,
Instituto de Nanociencia y Nanotecnología (CNEA) and Conicet
, 8400 Bariloche, Río Negro, Argentina
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A. Butera
A. Butera
Centro Atómico Bariloche,
Instituto de Nanociencia y Nanotecnología (CNEA) and Conicet
, 8400 Bariloche, Río Negro, Argentina
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Appl. Phys. Lett. 108, 242413 (2016)
Article history
Received:
May 04 2016
Accepted:
June 04 2016
Citation
J. E. Gómez, J. M. Vargas, L. Avilés-Félix, A. Butera; Magnetoelectric control of spin currents. Appl. Phys. Lett. 13 June 2016; 108 (24): 242413. https://doi.org/10.1063/1.4954167
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