October 2016

Journal

Inversion of ferrimagnetic magnetization by ferroelectric switching via a novel magnetoelectric coupling

By:
Weng, Yakui; Lin, Lingfang; Dagotto Mir, Elbio R; Dong, Shuai
Journal Name:
Physical Review Letters
Page Number:
037601
Volume:
117
Issue Number:
3
Publication Date:
October 2016
View DOI Listing:
https://doi.org/10.1103/PhysRevLett.117.037601

Abstract

Although several multiferroic materials or heterostructures have been extensively studied, finding strong magnetoelectric couplings for the electric field control of the magnetization remains challenging. Here, a novel interfacial magnetoelectric coupling based on three components (ferroelectric dipole, magnetic moment, and antiferromagnetic order) is analytically formulated. As an extension of carrier-mediated magnetoelectricity, the new coupling is shown to induce an electric-magnetic hysteresis loop. Realizations employing BiFeO3 bilayers grown along the [111] axis are proposed. Without involving magnetic phase transitions, the magnetization orientation can be switched by the carrier modulation driven by the field effect, as confirmed using first-principles calculations.


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