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Room Temperature Magnetic Memory Effect in Cluster-Glassy Fe-Doped NiO Nanoparticles

机译:室温磁性记忆效果簇玻璃Fe掺杂NiO纳米粒子

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摘要

The Fe-doped NiO nanoparticles that were synthesized using a co-precipitation method are characterized by enhanced room-temperature ferromagnetic property evident from magnetic measurements. Neutron powder diffraction experiments suggested an increment of the magnetic moment of 3 ions in the nanoparticles as a function of Fe-concentration. The temperature, time, and field-dependent magnetization measurements show that the effect of Fe-doping in NiO has enhanced the intraparticle interactions due to formed defect clusters. The intraparticle interactions are proposed to bring additional magnetic anisotropy energy barriers that affect the overall magnetic moment relaxation process and emerging as room temperature magnetic memory. The outcome of this study is attractive for the future development of the room temperature ferromagnetic oxide system to facilitate the integration of spintronic devices and understanding of their fundamental physics.
机译:使用共沉淀法合成的Fe掺杂的NiO纳米颗粒,其特征在于从磁测量的增强的室温铁磁性。中子粉末衍射实验表明,作为Fe浓度的函数,纳米颗粒中3离子中的磁矩的增量。温度,时间和场依赖性磁化测量表明,由于形成的缺陷簇,Fe掺杂在NIO中的效果增强了粒前相互作用。提出了粒前相互作用以使额外的磁各向异性能量屏障影响整体磁矩弛豫过程,并作为室温磁存储器出现。本研究的结果对于室温铁磁氧化物系统的未来发展是有吸引力的,以便于旋转装置的整合和对其基本物理学的理解。

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