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通过双束交叉脉冲激光沉积法制备的BiFeO3/-BiCrO3薄膜的生长、结构与性能

Growth, structure, and properties of BiFeO3/-BiCrO3 films obtained by dual cross beam PLD.

作者信息

Nechache Riad, Harnagea Catalin, Gunawan Lina, Carignan Louis-Philipe, Maunders Christian, Ménard David, Botton Gianluigi A, Pignolet Alain

机构信息

Institut National de la Recherche Scientifique - Energie, Materiaux et Télécommunications, Boulevard Lionel-Boulet, Varennes (Montreal Metropolitan Area), Québec, J3X 1S2, Canada.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Dec;54(12):2645-52. doi: 10.1109/TUFFC.2007.593.

Abstract

The properties of epitaxial Bi(2)FeCrO(6) thin films, recently synthesized by pulsed laser deposition, have partially confirmed the theoretical predictions (i.e., a magnetic moment of 2 micro(B) per formula unit and a polarization of approximately 80 microC/cm(2) at 0 K). The existence of magnetic ordering at room temperature for this material is an unexpected, but very promising, result that needs to be further investigated. Because magnetism is assumed to arise from the exchange interaction between the Fe and Cr cations, the magnetic behavior is strongly dependent on both their ordering and the distance between them. We present here the successful synthesis of epitaxial Bi(2)Fe(x)CryO(6) (BFCO x/y) films grown on SrTiO3 substrates using dual crossed-beam, pulsed-laser deposition. The crystal structure of the films has different types of (111)-oriented superstructures, depending on the deposition conditions. The multiferroic character of BFCO (x/y) films is proven by the presence of both ferroelectric and magnetic hysteresis at room temperature. The oxidation state of Fe and Cr ions in the films is shown to be 3+ only, and the difference in macroscopic magnetization with Fe/Cr ratio composition could only be due to ordering of the Cr(3+) and Fe(3+) cations to the modification of the exchange interaction between them.

摘要

最近通过脉冲激光沉积合成的外延Bi(2)FeCrO(6)薄膜的特性部分证实了理论预测(即每个化学式单位的磁矩为2μB,在0 K时极化约为80μC/cm(2))。这种材料在室温下存在磁有序是一个意外但非常有前景的结果,需要进一步研究。由于磁性被认为源于Fe和Cr阳离子之间的交换相互作用,磁行为强烈依赖于它们的有序排列以及它们之间的距离。我们在此展示了使用双交叉束脉冲激光沉积在SrTiO3衬底上成功合成外延Bi(2)Fe(x)CryO(6)(BFCO x/y)薄膜。根据沉积条件,薄膜的晶体结构具有不同类型的(111)取向超结构。BFCO(x/y)薄膜的多铁性特征通过室温下铁电和磁滞的存在得到证明。薄膜中Fe和Cr离子的氧化态仅显示为3+,并且宏观磁化强度随Fe/Cr比组成的差异只能归因于Cr(3+)和Fe(3+)阳离子的有序排列对它们之间交换相互作用的改变。

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