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Investigating the Size and Microstrain Influence in the Magnetic Order/Disorder State of GdCu2 Nanoparticles

机译:研究GdCu2纳米粒子的磁有序/无序状态的尺寸和微应变影响。

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摘要

A series of GdCu nanoparticles with controlled sizes ranging from 7 nm to 40 nm has been produced via high-energy inert-gas ball milling. Rietveld refinements on the X-ray diffraction measurements ensure that the bulk crystalline structure is retained within the nanoparticles, thanks to the employed low milling times ranging from = 0.5 to = 5 h. The analysis of the magnetic measurements shows a crossover from Superantiferromagnetism (SAF) to a Super Spin Glass state as the size decreases at NP size of 18 nm. The microstrain contribution, which is always kept below 1%, together with the increasing surface-to-core ratio of the magnetic moments, trigger the magnetic disorder. Additionally, an extra contribution to the magnetic disorder is revealed within the SAF state, as the oscillating RKKY indirect exchange achieves to couple with the aforementioned contribution that emerges from the size reduction. The combination of both sources of disorder leads to a maximised frustration for 25 nm sized NPs.
机译:通过高能惰性气体球磨生产了一系列尺寸在7 nm至40 nm之间的GdCu纳米粒子。 X射线衍射测量的Rietveld改进确保了主体晶体结构保留在纳米颗粒内,这要归功于所采用的从0.5到= 5 h的低研磨时间。磁性测量结果的分析表明,在18 nm的NP尺寸下,随着尺寸的减小,从超级反磁性(SAF)过渡到超级自旋玻璃态。始终保持在1%以下的微应变贡献以及不断增加的磁矩的表面芯比会触发磁混乱。此外,由于振荡的RKKY间接交换可实现与上述尺寸减小带来的贡献相结合,因此在SAF状态下揭示了对磁异常的额外贡献。两种疾病来源的结合导致25纳米大小NP的最大挫败感。

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