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Enhanced magnetostriction derived from magnetic single domain structures in cluster-assembled SmCo films

机译:从簇组装的SMCO薄膜中源自磁性单结构域结构的增强磁致伸缩

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摘要

Cluster-assembled SmCo alloy films were prepared by low energy cluster beam deposition. The structure, magnetic domain, magnetization, and magnetostriction of the films were characterized. It is shown that the as-prepared films are assembled in compact and uniformly distributed spherical cluster nanoparticles, most of which, after vacuum in situ annealing at 700 K, aggregated to form cluster islands. These cluster islands result in transformations from superparamagnetic states to magnetic single domain (MSD) states in the films. Such MSD structures contribute to the enhanced magnetostrictive behaviors with a saturation magnetostrictive coefficient of 160 x 10(-6) in comparison to 105 x 10(-6) for the as-prepared films. This work demonstrates candidate materials that could be applied in nano-electromechanical systems, low power information storage, and weak magnetic detecting devices.
机译:通过低能量簇光束沉积制备簇组装的SMCO合金薄膜。 表征了膜的结构,磁畴,磁化和磁致伸缩。 结果表明,由制备的薄膜组装在紧凑且均匀分布的球形簇纳米颗粒中,大多数情况下,在700k的原位退火后真空,聚集形成簇岛。 这些集群群岛导致从薄膜中的超顺磁性状态转换为磁影中的磁性单域(MSD)状态。 这种MSD结构有助于具有160×10(-6)的饱和磁致伸缩系数的增强型磁致伸缩行为,相对于制备的作为制备的薄膜105×10(-6)。 这项工作演示了可应用于纳米机电系统,低功率信息存储和弱磁检测装置的候选材料。

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