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Exchange bias in BiFe_(0.8)Mn_(0.2)O_3 nanoparticles with an antiferromagnetic core and a diluted antiferromagnetic shell

机译:具有反铁磁核和稀释的反铁磁壳的BiFe_(0.8)Mn_(0.2)O_3纳米粒子中的交换偏压

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摘要

We have observed conventional signatures of exchange bias (EB), in the form of a shift in the field-cooled hysteresis loop, and a training effect, in BiFe_(0.8)Mn_(0.2)O_3 nanoparticles. From neutron diffraction, thermoremanent magnetization, and isothermoremanent magnetization measurements, the nanoparticles are found to be core shell in nature, consisting of an antiferromagnetic (AFM) core, and a two-dimensional diluted AFM (DAFF) shell with a net magnetization under a field. The analysis of the training effect data using Binek's model shows that the observed loop shift arises entirely due to an interface exchange coupling between the core and shell, and the intrinsic contribution of the DAFF shell to the total loop shift is zero. A significantly high value of the EB field has been observed at room temperature. The present study is useful to understand the origin of EB in other DAFF-based systems as well.
机译:我们在BiFe_(0.8)Mn_(0.2)O_3纳米粒子中观察到了交流偏置(EB)的常规信号,其形式为场冷磁滞回线的偏移和训练效果。通过中子衍射,热剩磁和其他永久磁化测量,发现纳米粒子实际上是核壳,由反铁磁(AFM)核和二维稀释AFM(DAFF)壳构成,在磁场下其净磁化。使用Binek模型对训练效果数据进行的分析表明,观察到的环路偏移完全是由于内核和外壳之间的接口交换耦合引起的,而DAFF外壳对总环路偏移的内在贡献为零。在室温下已观察到很高的EB场值。本研究对于了解其他基于DAFF的系统中EB的起源也很有用。

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