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Long‐Range Nonvolatile Electric Field Effect in Epitaxial Fe/Pb(Mg1/3Nb2/3)0.7Ti0.3O3 Heterostructures.

Authors :
Zhou, Cai
Shen, Lvkang
Liu, Ming
Gao, Cunxu
Jia, Chenglong
Jiang, Changjun
Xue, Desheng
Source :
Advanced Functional Materials; 5/28/2018, Vol. 28 Issue 20, p1-1, 6p
Publication Year :
2018

Abstract

Abstract: One of the ideal candidates of using electric field to manipulate magnetism is the recently developed multiferroics with emergent coupling of magnetism and electricity, particularly in synthesizing artificial nanoscale ferroelectric and ferromagnetic materials. Here, a long‐range nonvolatile electric field effect is investigated in Fe/Pb(Mg<subscript>1/3</subscript>Nb<subscript>2/3</subscript>)<subscript>0.7</subscript>Ti<subscript>0.3</subscript>O<subscript>3</subscript> heterostructure using the dependence of the magnon‐driven magnetoelectric coupling on the epitaxial Fe thin film (4–30 nm) thickness at room temperature using measurements based on the ferromagnetic resonance. The magnon‐driven magnetoelectric coupling tuning of the ferromagnetic resonance field shows a linear response to the electric field, with a resonance field shift that occurs under both positive and negative remanent polarizations, and demonstrates nonvolatile behavior. Moreover, the spin diffusion length of the epitaxial Fe thin film of ≈9 nm is obtained from the results that the change of the cubic magnetocrystalline anisotropy field under different electric fields varies with Fe thickness. These results are promising for the design of future multiferroic devices. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1616301X
Volume :
28
Issue :
20
Database :
Complementary Index
Journal :
Advanced Functional Materials
Publication Type :
Academic Journal
Accession number :
129612346
Full Text :
https://doi.org/10.1002/adfm.201707027