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A review of high magnetic moment thin films for microscale and nanotechnology applications

机译:用于微米级和纳米技术应用的高磁矩薄膜综述

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摘要

The creation of large magnetic fields is a necessary component in many technologies, ranging from magnetic resonance imaging, electric motors and generators, and magnetic hard disk drives in information storage. This is typically done by inserting a ferromagnetic pole piece with a large magnetisation density MS in a solenoid. In addition to large MS, it is usually required or desired that the ferromagnet is magnetically soft and has a Curie temperature well above the operating temperature of the device. A variety of ferromagnetic materials are currently in use, ranging from FeCo alloys in, for example, hard disk drives, to rare earth metals operating at cryogenic temperatures in superconducting solenoids. These latter can exceed the limit on MS for transition metal alloys given by the Slater-Pauling curve. This article reviews different materials and concepts in use or proposed for technological applications that require a large MS, with an emphasis on nanoscale material systems, such as thin and ultra-thin films. Attention is also paid to other requirements or properties, such as the Curie temperature and magnetic softness. In a final summary, we evaluate the actual applicability of the discussed materials for use as pole tips in electromagnets, in particular, in nanoscale magnetic hard disk drive read-write heads; the technological advancement of the latter has been a very strong driving force in the development of the field of nanomagnetism.
机译:大磁场的形成是许多技术中必不可少的组成部分,从磁共振成像,电动机和发电机到信息存储中的磁性硬盘驱动器不等。这通常是通过在螺线管中插入具有大磁化密度MS的铁磁极靴来完成的。除大型MS外,通常需要或希望铁磁体具有磁性,并且其居里温度远高于设备的工作温度。当前使用多种铁磁材料,从例如硬盘驱动器中的FeCo合金到超导螺线管中在低温下工作的稀土金属。后者可能超过Slater-Pauling曲线给出的过渡金属合金的MS限制。本文回顾了正在使用或建议用于大型MS的技术应用中的不同材料和概念,重点是纳米级材料系统,例如薄膜和超薄膜。还需要注意其他要求或属性,例如居里温度和磁软度。在最后的总结中,我们评估了所讨论的材料在电磁体中,特别是在纳米级磁性硬盘驱动器读写头中用作磁极尖端的实际适用性;后者的技术进步一直是纳米磁性领域发展的强大动力。

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