Manipulating magnetoelectric energy landscape in multiferroics

BiFeO3 has a wide application but the impact of rare-earth substitution for the evolution of the coupling mechanism is unknown. Here, the authors reveal the correlation between ferroelectricity, antiferromagnetism, a weak ferromagnetic moment, and their switching pathways in La-substituted BiFeO3.

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Autores principales: Yen-Lin Huang, Dmitri Nikonov, Christopher Addiego, Rajesh V. Chopdekar, Bhagwati Prasad, Lei Zhang, Jyotirmoy Chatterjee, Heng-Jui Liu, Alan Farhan, Ying-Hao Chu, Mengmeng Yang, Maya Ramesh, Zi Qiang Qiu, Bryan D. Huey, Chia-Ching Lin, Tanay Gosavi, Jorge Íñiguez, Jeffrey Bokor, Xiaoqing Pan, Ian Young, Lane W. Martin, Ramamoorthy Ramesh
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/f8b0eaae0ae0487c8897c75197820136
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spelling oai:doaj.org-article:f8b0eaae0ae0487c8897c751978201362021-12-02T18:24:58ZManipulating magnetoelectric energy landscape in multiferroics10.1038/s41467-020-16727-22041-1723https://doaj.org/article/f8b0eaae0ae0487c8897c751978201362020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16727-2https://doaj.org/toc/2041-1723BiFeO3 has a wide application but the impact of rare-earth substitution for the evolution of the coupling mechanism is unknown. Here, the authors reveal the correlation between ferroelectricity, antiferromagnetism, a weak ferromagnetic moment, and their switching pathways in La-substituted BiFeO3.Yen-Lin HuangDmitri NikonovChristopher AddiegoRajesh V. ChopdekarBhagwati PrasadLei ZhangJyotirmoy ChatterjeeHeng-Jui LiuAlan FarhanYing-Hao ChuMengmeng YangMaya RameshZi Qiang QiuBryan D. HueyChia-Ching LinTanay GosaviJorge ÍñiguezJeffrey BokorXiaoqing PanIan YoungLane W. MartinRamamoorthy RameshNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yen-Lin Huang
Dmitri Nikonov
Christopher Addiego
Rajesh V. Chopdekar
Bhagwati Prasad
Lei Zhang
Jyotirmoy Chatterjee
Heng-Jui Liu
Alan Farhan
Ying-Hao Chu
Mengmeng Yang
Maya Ramesh
Zi Qiang Qiu
Bryan D. Huey
Chia-Ching Lin
Tanay Gosavi
Jorge Íñiguez
Jeffrey Bokor
Xiaoqing Pan
Ian Young
Lane W. Martin
Ramamoorthy Ramesh
Manipulating magnetoelectric energy landscape in multiferroics
description BiFeO3 has a wide application but the impact of rare-earth substitution for the evolution of the coupling mechanism is unknown. Here, the authors reveal the correlation between ferroelectricity, antiferromagnetism, a weak ferromagnetic moment, and their switching pathways in La-substituted BiFeO3.
format article
author Yen-Lin Huang
Dmitri Nikonov
Christopher Addiego
Rajesh V. Chopdekar
Bhagwati Prasad
Lei Zhang
Jyotirmoy Chatterjee
Heng-Jui Liu
Alan Farhan
Ying-Hao Chu
Mengmeng Yang
Maya Ramesh
Zi Qiang Qiu
Bryan D. Huey
Chia-Ching Lin
Tanay Gosavi
Jorge Íñiguez
Jeffrey Bokor
Xiaoqing Pan
Ian Young
Lane W. Martin
Ramamoorthy Ramesh
author_facet Yen-Lin Huang
Dmitri Nikonov
Christopher Addiego
Rajesh V. Chopdekar
Bhagwati Prasad
Lei Zhang
Jyotirmoy Chatterjee
Heng-Jui Liu
Alan Farhan
Ying-Hao Chu
Mengmeng Yang
Maya Ramesh
Zi Qiang Qiu
Bryan D. Huey
Chia-Ching Lin
Tanay Gosavi
Jorge Íñiguez
Jeffrey Bokor
Xiaoqing Pan
Ian Young
Lane W. Martin
Ramamoorthy Ramesh
author_sort Yen-Lin Huang
title Manipulating magnetoelectric energy landscape in multiferroics
title_short Manipulating magnetoelectric energy landscape in multiferroics
title_full Manipulating magnetoelectric energy landscape in multiferroics
title_fullStr Manipulating magnetoelectric energy landscape in multiferroics
title_full_unstemmed Manipulating magnetoelectric energy landscape in multiferroics
title_sort manipulating magnetoelectric energy landscape in multiferroics
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/f8b0eaae0ae0487c8897c75197820136
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