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插入银纳米层的低温有序FePt薄膜的垂直磁化行为

Perpendicular Magnetization Behavior of Low- Temperature Ordered FePt Films with Insertion of Ag Nanolayers.

作者信息

Wei Da-Hua

机构信息

Institute of Manufacturing Technology and Department of Mechanical Engineering, National Taipei University of Technology (TAIPEI TECH), Taipei 10608, Taiwan.

出版信息

Materials (Basel). 2016 Mar 18;9(3):209. doi: 10.3390/ma9030209.

Abstract

FePt-Ag nanocomposite films with large perpendicular magnetic anisotropy have been fabricated by alternate-atomic-layer electron beam evaporation onto MgO(100) substrates at the low temperature of 300 °C. Their magnetization behavior and microstructure have been studied. The surface topography was observed and varied from continuous to nanogranular microstructures with insertion of Ag nanolayers into Fe/Pt bilayer films. The measurement of angular-dependent coercivity showed a tendency of the domain-wall motion as a typical peak behavior shift toward more like a coherent Stoner-Wohlfarth rotation type with the insertion of Ag nanolayers into the FePt films. On the other hand, the inter-grain interaction was determined from a Kelly-Henkel plot. The FePt film without insertion of Ag nanolayers has a positive δ, indicating strong exchange coupling between neighboring grains, whereas the FePt film with insertion of Ag nanolayers has a negative δ, indicating that inter-grain exchange coupling is weaker, thus leading to the presence of dipole interaction in the FePt-Ag nanogranular films. The magnetic characteristic measurements confirmed that the perpendicular magnetization reversal behavior and related surface morphology of low-temperature-ordered FePt(001) nanogranular films can be systematically controlled by the insertion of Ag nanolayers into the FePt system for next generation magnetic storage medium applications.

摘要

通过交替原子层电子束蒸发法,在300°C的低温下将FePt-Ag纳米复合薄膜制备在MgO(100)衬底上,该薄膜具有较大的垂直磁各向异性。对其磁化行为和微观结构进行了研究。观察到表面形貌随Ag纳米层插入Fe/Pt双层膜而从连续结构变为纳米颗粒结构。角相关矫顽力的测量表明,随着Ag纳米层插入FePt薄膜,畴壁运动呈现出一种典型的峰值行为向更类似于相干斯托纳-沃尔法斯旋转类型转变的趋势。另一方面,通过凯利-亨克尔图确定了晶粒间相互作用。未插入Ag纳米层的FePt薄膜δ为正,表明相邻晶粒间存在强交换耦合,而插入Ag纳米层的FePt薄膜δ为负,表明晶粒间交换耦合较弱,从而导致FePt-Ag纳米颗粒薄膜中存在偶极相互作用。磁性特性测量证实,通过在FePt体系中插入Ag纳米层,可系统地控制低温有序FePt(001)纳米颗粒薄膜的垂直磁化反转行为及相关表面形貌,以用于下一代磁存储介质应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9715/5456664/ed5dceae35cb/materials-09-00209-g001.jpg

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