Reversible electric control of exchange bias in a multiferroic field-effect device

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Reversible electric control of exchange bias in a multiferroic field-effect device

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dc.contributor.author Wu S.M. vi
dc.contributor.author Cybart S.A. vi
dc.contributor.author Yu P. vi
dc.contributor.author Rossell M.D. vi
dc.contributor.author Zhang J.X. vi
dc.contributor.author Ramesh R. vi
dc.contributor.author Dynes R.C. vi
dc.date.accessioned 2011-06-11T06:36:34Z
dc.date.available 2011-06-11T06:36:34Z
dc.date.issued 2010 vi
dc.identifier.citation Volume 9, Issue 9, Page 756-761 vi
dc.identifier.issn vi
dc.identifier.uri http://tainguyenso.vnu.edu.vn/jspui/handle/123456789/13974
dc.description.abstract Electric-field control of magnetization has many potential applications in magnetic memory storage, sensors and spintronics. One approach to obtain this control is through multiferroic materials. Instead of using direct coupling between ferroelectric and ferromagnetic order parameters in a single-phase multiferroic material, which only shows a weak magnetoelectric effect, a unique method using indirect coupling through an intermediate antiferromagnetic order parameter can be used. In this article, we demonstrate electrical control of exchange bias using a field-effect device employing multiferroic (ferroelectric/antiferromagnetic) BiFeO 3 as the dielectric and ferromagnetic La 0.7 Sr 0.3 MnO 3 as the conducting channel; we can reversibly switch between two distinct exchange-bias states by switching the ferroelectric polarization of BiFeO 3. This is an important step towards controlling magnetization with electric fields, which may enable a new class of electrically controllable spintronic devices and provide a new basis for producing electrically controllable spin-polarized currents. © 2010 Macmillan Publishers Limited. All rights reserved. vi
dc.publisher Nature Materials vi
dc.subject vi
dc.title Reversible electric control of exchange bias in a multiferroic field-effect device vi
dc.type Article vi

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