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Permeability spectra of yttrium iron garnet and its granular composite materials under dc magnetic field

机译:直流磁场下钇铁石榴石及其粒状复合材料的渗透光谱

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摘要

Relative complex permeability spectra (μr = μ′r - iμ″r) and the dc magnetic field effect on them for a yttrium iron garnet (YIG) and its granular composite materials have been studied to evaluate the negative permeability characteristics. In the sintered YIG, two distinct peaks corresponding to the domain wall and the gyromagnetic spin resonance were observed in the imaginary part μ″r under zero magnetic field; the real part of complex permeability μ′r shows a small negative value in a certain frequency range. The Lorentz type magnetic resonance with the negative permeability dispersion was observed under dc magnetic field. Permeability spectra were evaluated by the numerical fitting of actual measurement data to a resonance formula using six parameters (resonance frequencies, static susceptibilities, and damping factors of the domain wall motion and the gyromagnetic spin rotation). The dc magnetic field suppresses the domain wall contribution and the spin component becomes dominant. In the YIG granular composite material, the permeability dispersion frequency shifts to higher frequency region due to demagnetizing field; the spin component becomes dominant. Negative permeability spectra were also observed in the high content YIG composites under the dc field. The negative permeability spectra of YIG composite materials can also be applied to the left-handed material as well as the sintered YIG.
机译:研究了钇铁石榴石(YIG)及其颗粒复合材料的相对复磁导率谱(μr= μ′r-iμ″ r)和直流磁场对其的影响,以评价其负磁导率特性。在烧结的YIG中,在零磁场下的虚部μ''r中观察到两个分别对应于畴壁和旋磁自旋共振的峰。复磁导率μ'r的实部在一定频率范围内显示较小的负值。在直流磁场下观察到具有负磁导率色散的洛伦兹型磁共振。通过使用六个参数(共振频率,静态磁化率以及磁畴壁运动和旋磁自旋旋转的阻尼因子),通过将实际测量数据数值拟合到共振公式来评估渗透率谱。直流磁场抑制了畴壁的贡献,自旋分量成为主导。在YIG粒状复合材料中,由于去磁场,磁导率色散频率移至较高的频率区域。自旋分量成为主导。在直流场下,高含量YIG复合材料中也观察到负磁导率光谱。 YIG复合材料的负磁导率谱也可以应用于左旋材料以及烧结的YIG。

著录项

  • 来源
    《Journal of Applied Physics》 |2011年第v110n5期|p.053909.1-053909.12|共12页
  • 作者单位

    Graduate School of Education, Hiroshima University, Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8524, Japan;

    Tokuyama College of Technology, Gakuendai, Shunan, Yamaguchi 745-8585, Japan;

    Graduate School of Engineering, University ofHyogo, Syosha, Himeji, Hyogo 671-2280, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:58:37

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