Quantitative analysis of ordering of equiatomic FePt nanoparticles by electron diffraction

T. Miyazaki, Y. Takahashi, S. Okamoto, O. Kitakami, Y. Shimada, Z. Akase, Y. Murakami, D. Shindo, K. Hono
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Abstract

In the present work, we investigate the size effect on the L1/sub 0/ ordering of FePt [001] epitaxial particles. From the dark field images using superlattice 110 spots, we clarify the critical size for L1/sub 0/ ordering of FePt. Furthermore, we investigate the order parameter S of each FePt nanoparticle from its electron diffraction pattern taken by nanometer-size electron beam, and clarify the relationship between the particle size d and the order parameter S. The present work has unambiguously shown that the ordering of L1/sub 0/ FePt is entirely suppressed when its size is less than d /spl sim/ 2 nm. Such size effect is not so serious for practical applications of FePt to permanent magnets or magnetic recording media, because the effect is significant only for d < 1.5 /spl sim/ 2 nm which is much smaller than the superparamagnetic limit of L1/sub 0/ FePt.
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电子衍射法定量分析等原子FePt纳米颗粒的有序性
在本工作中,我们研究了FePt[001]外延颗粒的L1/sub / 0/有序的尺寸效应。从使用超晶格110点的暗场图像中,我们明确了FePt的L1/sub 0/有序的临界尺寸。此外,我们利用纳米级电子束拍摄的FePt纳米粒子的电子衍射图对其序参量S进行了研究,并阐明了粒子尺寸d与序参量S之间的关系。本研究明确表明,当其尺寸小于d /spl sim/ 2 nm时,L1/sub 0/ FePt的序参量完全被抑制。这种尺寸效应对于FePt在永磁体或磁记录介质中的实际应用并不那么严重,因为这种效应仅在d < 1.5 /spl sim/ 2nm时才显著,远远小于L1/sub 0/ FePt的超顺磁极限。
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