基于硬磁化轴方向的CU基超磁致伸缩薄膜特性研究

Fuji Wang, Zhenyuan Jia, W. Liu
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引用次数: 0

摘要

磁场驱动频率过高是制约超磁致伸缩薄膜器件推广应用的关键因素之一。研究如何降低超磁致伸缩薄膜器件的磁场驱动频率,对该类器件的推广应用具有重要意义。本文深入分析了造成超磁致伸缩薄膜存在各向异性的根本原因。在此基础上,结合薄膜磁致伸缩过程中磁畴的运动机理,提出了只要能够克服巨磁致伸缩薄膜中存在的退磁场,在低驱动频率磁场作用下,就能在硬磁化轴方向上获得较好的动态特性的新思路。建立了超磁致伸缩薄膜的实验系统,并在该系统中进行了实验。结果表明,施加适当的偏置磁场可以克服退磁,薄膜在硬磁化轴方向上产生优异的超谐波共振。实验结果为开发低驱动频率的超磁致伸缩薄膜器件提供了一条新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on characteristics of CU substrate giant magnetostrictive thin film based in the direction of hard magnetization axis
High driving frequency of magnetic field is one of the key factors which restrict the popularization and application of giant magnetostrictive thin film device. The research on how to reduce the magnetic field driving frequency of giant magnetostrictive thin film device has great significance to the popularization and application of this kind of device. In this paper, the fundamental reason which causes giant magnetostrictive thin film existing anisotropy is analyzed deeply. Based on this, combining with the motion mechanism of magnetic domains in the magnetostriction process of thin film, a new idea that as long as it is able to overcome the demagnetizing field existing in giant magnetostrictive thin film, better dynamic characteristics can be obtained in the direction of hard magnetization axis under the action of magnetic field with low driving frequency is proposed. An experimental system of giant magnetostrictive film is established and an experiment is carried out in the system. The results show that demagnetizing field can be overcome through applying an appropriate bias magnetic field, and thin film may generate excellent superharmonic resonance in hard magnetization axis direction. The experimental results provide a new way for the development of giant magnetostrictive thin film device with low driving frequency.
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