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首页> 外文期刊>Journal of Applied Physics >Influence of mesoporous or parasitic BiFeO_3 structural state on the magnetization reversal in multiferroic BiFeO_3/Ni_(81)Fe_(19) polycrystalline bilayers
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Influence of mesoporous or parasitic BiFeO_3 structural state on the magnetization reversal in multiferroic BiFeO_3/Ni_(81)Fe_(19) polycrystalline bilayers

机译:介孔或寄生BiFeO_3结构态对多铁性BiFeO_3 / Ni_(81)Fe_(19)多晶双层中磁化反转的影响

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摘要

Coupled ferromagnetic and antiferromagnetic bilayers are an important class of materials that allow manipulating magnetic properties, including the interfacial exchange bias phenomenon. Bismuth ferrite, BiFeO3, is the most studied single-phase magnetoelectric multiferroic due to its unique ferroelectric and antiferromagnetic orderings well above room temperature. We report on a systematic experimental study regarding the direct correlation between the Bi2O3 parasitic phase concentration in the BiFeO3 and the magnetic properties of the polycrystalline heterostructure BiFeO3/Ni81Fe19 deposited via magnetron sputtering. It was found that the macroscopic exchange field, that arises from exchange bias coupling, is zero for phase-pure BiFeO3 and increases up to 18 Oe on increasing the concentration of Bi2O3. This trend is in agreement with the azimuthal behavior of the magnetization reversal. The structural characterization also indicates that phase-pure BiFeO3 has a disordered mesoporous structure. The influence of the Bi2O3 parasitic phase and mesoporous state, that is known to exist and introduce defects in the polycrystalline bilayers of BiFeO3/Ni81Fe19, on the magnetization reversal and exchange bias coupling is reported for the first time in this study. Published by AIP Publishing.
机译:耦合的铁磁和反铁磁双层是一类重要的材料,可以操纵磁性能,包括界面交换偏压现象。铋铁氧体BiFeO3由于其在远高于室温的独特铁电和反铁磁顺序而成为研究最多的单相磁电多铁。我们报告了有关BiFeO3中Bi2O3寄生相浓度与通过磁控溅射沉积的多晶异质结构BiFeO3 / Ni81Fe19的磁性之间直接相关的系统实验研究。已发现,由交换偏置耦合产生的宏观交换场对于纯相BiFeO3为零,并随着Bi2O3浓度的增加而增加到18 Oe。该趋势与磁化反转的方位角行为一致。结构表征还表明,纯相BiFeO3具有无序的介孔结构。这项研究首次报道了Bi2O3的寄生相和介孔态的影响,该影响和存在于BiFeO3 / Ni81Fe19的多晶双层中并引入了缺陷,对磁化反转和交换偏压耦合产生了影响。由AIP Publishing发布。

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