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首页> 外文期刊>Physical review >Acoustic-domain resonance mode in magnetic closure-domain structures: A probe for domain-shape characteristics and domain-wall transformations
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Acoustic-domain resonance mode in magnetic closure-domain structures: A probe for domain-shape characteristics and domain-wall transformations

机译:磁闭合域结构中的声域共振模式:域形状特征和域壁转换的探针

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摘要

The magnetic-domain resonance was studied for varying closure-domain structures in Co_(40)Fe_(40)B_(20) thin-film elements. A domain-shape anisotropy model was introduced, by which a significant increase of the acoustic-domain resonance frequency for decreasing domain width is predicted. We show that magnetic flux closure further increases the domain-width effect on the acoustic-domain resonance frequency. Furthermore, the domain resonance frequency is very sensitive to the effective width of the magnetic-domain walls due to dynamic dipolar interaction. The latter is quantified by calculating the dynamic wall width dependent dipolar fields. Domain-wall transitions in external magnetic fields manifest in either smooth or sudden resonance frequency changes, depending on the involved domain-wall types. Quantitative agreement between experimental and modeled data is obtained. Measuring the acoustic-domain resonance in small excitation fields therefore displays a method to analyze domain-wall instabilities and domain-wall interactions.
机译:研究了Co_(40)Fe_(40)B_(20)薄膜元件中不同的闭合畴结构的磁畴共振。引入域形状各向异性模型,通过该模型可以预测声域共振频率的显着增加,以减小域宽度。我们表明,磁通量封闭进一步增加了对声域共振频率的域宽度效应。此外,由于动态偶极相互作用,畴共振频率对磁畴壁的有效宽度非常敏感。后者通过计算动态壁宽相关的​​偶极场来量化。取决于所涉及的畴壁类型,外部磁场中的畴壁跃迁表现为平滑或突然的共振频率变化。获得了实验数据和建模数据之间的定量一致性。因此,在小激发场中测量声域共振显示了一种分析域壁不稳定性和域壁相互作用的方法。

著录项

  • 来源
    《Physical review》 |2014年第21期|214412.1-214412.6|共6页
  • 作者单位

    IFW Dresden, Institute for Metallic Materials, PO 270116, 01171 Dresden, Germany;

    IFW Dresden, Institute for Metallic Materials, PO 270116, 01171 Dresden, Germany;

    IFW Dresden, Institute for Metallic Materials, PO 270116, 01171 Dresden, Germany;

    IFW Dresden, Institute for Metallic Materials, PO 270116, 01171 Dresden, Germany and TU Dresden, Department of Mechanical Engineering, Institute for Materials Science, 01062 Dresden, Germany;

    Kiel University, Institute for Materials Science, Kaiserstrasse 2, 24143 Kiel, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    domain structure (including magnetic bubbles); domain walls and domain structure;

    机译:畴结构(包括磁性气泡);畴壁和畴结构;

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