Chemical ordering suppresses large-scale electronic phase separation in doped manganites

In oxide materials, cation doping strongly influences the electronic correlations which promote diverse phenomena such as colossal magnetoresistance and superconductivity. Here, the authors use magnetic microscopy to image the effects of spatially ordered doping on electronic phase separation in oxi...

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Autores principales: Yinyan Zhu, Kai Du, Jiebin Niu, Lingfang Lin, Wengang Wei, Hao Liu, Hanxuan Lin, Kai Zhang, Tieying Yang, Yunfang Kou, Jian Shao, Xingyu Gao, Xiaoshan Xu, Xiaoshan Wu, Shuai Dong, Lifeng Yin, Jian Shen
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/4cd44a4e9f2a4118813a3e4f4b501cfd
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spelling oai:doaj.org-article:4cd44a4e9f2a4118813a3e4f4b501cfd2021-12-02T14:39:29ZChemical ordering suppresses large-scale electronic phase separation in doped manganites10.1038/ncomms112602041-1723https://doaj.org/article/4cd44a4e9f2a4118813a3e4f4b501cfd2016-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms11260https://doaj.org/toc/2041-1723In oxide materials, cation doping strongly influences the electronic correlations which promote diverse phenomena such as colossal magnetoresistance and superconductivity. Here, the authors use magnetic microscopy to image the effects of spatially ordered doping on electronic phase separation in oxide superlattices.Yinyan ZhuKai DuJiebin NiuLingfang LinWengang WeiHao LiuHanxuan LinKai ZhangTieying YangYunfang KouJian ShaoXingyu GaoXiaoshan XuXiaoshan WuShuai DongLifeng YinJian ShenNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-6 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yinyan Zhu
Kai Du
Jiebin Niu
Lingfang Lin
Wengang Wei
Hao Liu
Hanxuan Lin
Kai Zhang
Tieying Yang
Yunfang Kou
Jian Shao
Xingyu Gao
Xiaoshan Xu
Xiaoshan Wu
Shuai Dong
Lifeng Yin
Jian Shen
Chemical ordering suppresses large-scale electronic phase separation in doped manganites
description In oxide materials, cation doping strongly influences the electronic correlations which promote diverse phenomena such as colossal magnetoresistance and superconductivity. Here, the authors use magnetic microscopy to image the effects of spatially ordered doping on electronic phase separation in oxide superlattices.
format article
author Yinyan Zhu
Kai Du
Jiebin Niu
Lingfang Lin
Wengang Wei
Hao Liu
Hanxuan Lin
Kai Zhang
Tieying Yang
Yunfang Kou
Jian Shao
Xingyu Gao
Xiaoshan Xu
Xiaoshan Wu
Shuai Dong
Lifeng Yin
Jian Shen
author_facet Yinyan Zhu
Kai Du
Jiebin Niu
Lingfang Lin
Wengang Wei
Hao Liu
Hanxuan Lin
Kai Zhang
Tieying Yang
Yunfang Kou
Jian Shao
Xingyu Gao
Xiaoshan Xu
Xiaoshan Wu
Shuai Dong
Lifeng Yin
Jian Shen
author_sort Yinyan Zhu
title Chemical ordering suppresses large-scale electronic phase separation in doped manganites
title_short Chemical ordering suppresses large-scale electronic phase separation in doped manganites
title_full Chemical ordering suppresses large-scale electronic phase separation in doped manganites
title_fullStr Chemical ordering suppresses large-scale electronic phase separation in doped manganites
title_full_unstemmed Chemical ordering suppresses large-scale electronic phase separation in doped manganites
title_sort chemical ordering suppresses large-scale electronic phase separation in doped manganites
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/4cd44a4e9f2a4118813a3e4f4b501cfd
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