Large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off

Key properties of transition metal perovskite oxides are degraded after epitaxial growth on ferroelectric substrates due to lattice-mismatch strain. Here, the authors use epitaxial lift-off and transfer to overcome this problem and demonstrate electric field control of a bulk-like magnetization.

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Autores principales: D. Pesquera, E. Khestanova, M. Ghidini, S. Zhang, A. P. Rooney, F. Maccherozzi, P. Riego, S. Farokhipoor, J. Kim, X. Moya, M. E. Vickers, N. A. Stelmashenko, S. J. Haigh, S. S. Dhesi, N. D. Mathur
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Publicado: Nature Portfolio 2020
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spelling oai:doaj.org-article:d326a7d2ba8446c8978bd0470b9865892021-12-02T18:02:42ZLarge magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off10.1038/s41467-020-16942-x2041-1723https://doaj.org/article/d326a7d2ba8446c8978bd0470b9865892020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16942-xhttps://doaj.org/toc/2041-1723Key properties of transition metal perovskite oxides are degraded after epitaxial growth on ferroelectric substrates due to lattice-mismatch strain. Here, the authors use epitaxial lift-off and transfer to overcome this problem and demonstrate electric field control of a bulk-like magnetization.D. PesqueraE. KhestanovaM. GhidiniS. ZhangA. P. RooneyF. MaccherozziP. RiegoS. FarokhipoorJ. KimX. MoyaM. E. VickersN. A. StelmashenkoS. J. HaighS. S. DhesiN. D. MathurNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
D. Pesquera
E. Khestanova
M. Ghidini
S. Zhang
A. P. Rooney
F. Maccherozzi
P. Riego
S. Farokhipoor
J. Kim
X. Moya
M. E. Vickers
N. A. Stelmashenko
S. J. Haigh
S. S. Dhesi
N. D. Mathur
Large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off
description Key properties of transition metal perovskite oxides are degraded after epitaxial growth on ferroelectric substrates due to lattice-mismatch strain. Here, the authors use epitaxial lift-off and transfer to overcome this problem and demonstrate electric field control of a bulk-like magnetization.
format article
author D. Pesquera
E. Khestanova
M. Ghidini
S. Zhang
A. P. Rooney
F. Maccherozzi
P. Riego
S. Farokhipoor
J. Kim
X. Moya
M. E. Vickers
N. A. Stelmashenko
S. J. Haigh
S. S. Dhesi
N. D. Mathur
author_facet D. Pesquera
E. Khestanova
M. Ghidini
S. Zhang
A. P. Rooney
F. Maccherozzi
P. Riego
S. Farokhipoor
J. Kim
X. Moya
M. E. Vickers
N. A. Stelmashenko
S. J. Haigh
S. S. Dhesi
N. D. Mathur
author_sort D. Pesquera
title Large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off
title_short Large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off
title_full Large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off
title_fullStr Large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off
title_full_unstemmed Large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off
title_sort large magnetoelectric coupling in multiferroic oxide heterostructures assembled via epitaxial lift-off
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/d326a7d2ba8446c8978bd0470b986589
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