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Quantitative Study on Current-Induced Effect in an Antiferromagnet Insulator/Pt Bilayer Film

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arxiv 1907.00314 v3 pith:K4MAP3FD submitted 2019-06-30 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords current-inducedalphaantiferromagnetsbilayerdynamicsfe2o3insulatormagnetic
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Quantitative investigation on the current-induced torque in antiferromagnets represents a great challenge, due to the lack of an independent method for controlling N\'eel vectors. Here by utilizing an antiferromagnetic insulator with Dzyaloshinskii-Moriya interaction, {\alpha}-Fe2O3, we show that the N\'eel vector can be controlled with a moderate external field, which is further utilized to calibrate the current-induced magnetic dynamics. We find that the current-induced magnetoresistance change in antiferromagnets can be complicated by resistive switching that does not have a magnetic origin. By excluding non-magnetic switching and comparing the current-induced dynamics with the field-induced one, we determine the nature and magnitude of current-induced effects in Pt/{\alpha}-Fe2O3 bilayer films.

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