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Emergent ferroelectricity in disordered tri-color multilayer structure comprised of ferromagnetic manganites

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【作者】 牛利伟陈长乐董祥雷邢辉罗炳成金克新

【Author】 Li-Wei Niu;Chang-Le Chen;Xiang-Lei Dong;Hui Xing;Bing-Cheng Luo;Ke-Xin Jin;The Key Laboratory of Space Applied Physics and Chemistry, Shaanxi Key Laboratory of Condensed Matter Structures and Properties,Northwestern Polytechnical University;

【机构】 The Key Laboratory of Space Applied Physics and Chemistry, Shaanxi Key Laboratory of Condensed Matter Structures and Properties,Northwestern Polytechnical University

【摘要】 Multiferroic materials,showing the coexistence and coupling of ferroelectric and magnetic orders,are of great technological and fundamental importance.However,the limitation of single phase multiferroics with robust magnetization and polarization hinders the magnetoelectric effect from being applied practically.Magnetic frustration,which can induce ferroelectricity,gives rise to multiferroic behavior.In this paper,we attempt to construct an artificial magnetically frustrated structure comprised of manganites to induce ferroelectricity.A disordered stacking of manganites is expected to result in frustration at interfaces.We report here that a tri-color multilayer structure comprised of non-ferroelectric La0.9Ca0.1MnO3(A)/Pr0.85Ca0.15MnO3(B)/Pr0.85Sr0.15MnO3(C) layers with the disordered arrangement of ABC-ACBCAB-CBA-BAC-BCA is prepared to form magnetoelectric multiferroics.The multilayer film exhibits evidence of ferroelectricity at room temperature,thus presenting a candidate for multiferroics.

【Abstract】 Multiferroic materials,showing the coexistence and coupling of ferroelectric and magnetic orders,are of great technological and fundamental importance.However,the limitation of single phase multiferroics with robust magnetization and polarization hinders the magnetoelectric effect from being applied practically.Magnetic frustration,which can induce ferroelectricity,gives rise to multiferroic behavior.In this paper,we attempt to construct an artificial magnetically frustrated structure comprised of manganites to induce ferroelectricity.A disordered stacking of manganites is expected to result in frustration at interfaces.We report here that a tri-color multilayer structure comprised of non-ferroelectric La0.9Ca0.1MnO3(A)/Pr0.85Ca0.15MnO3(B)/Pr0.85Sr0.15MnO3(C) layers with the disordered arrangement of ABC-ACBCAB-CBA-BAC-BCA is prepared to form magnetoelectric multiferroics.The multilayer film exhibits evidence of ferroelectricity at room temperature,thus presenting a candidate for multiferroics.

【基金】 supported by the National Natural Science Foundation of China(Grant Nos.61471301,61078057,51172183,51402240,and 51471134);the Specialized Research Fund for the Doctoral Program of Higher Education,China(Grant No.20126102110045);the Natural Science Foundation of Shaanxi Province,China(Grant No.2015JQ5125);the Fundamental Research Funds for the Central Universities,China(Grant No.3102015ZY078)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2016年10期
  • 【分类号】O469
  • 【被引频次】2
  • 【下载频次】13
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