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Magnetic properties and magnetoresistance in granular Fe‐Cu alloys

机译:粒状Fe‐Cu合金的磁性能和磁阻

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摘要

The structural, magnetic, and electrotransport properties of a metallic granular FexCu1−xalloys (x=0–0.35) were studied. These alloys were fabricated by using a coevaporation technique with an extremely high deposition rate. Observations by transmission electron microscope confirmed that these alloys consist of small Fe particles embedded in a Cu matrix. The ferromagnetic‐superparamagnetic transition occurs at the blocking temperature. The blocking temperatureTB, dependent on the atomic fractionxof Fe, is in a range of 80–300 K asx=0.10–0.22. AboveTB, the Fe particles exhibit superparamagnetic relaxation. Their magnetic behavior can be understood based on superparamagnetic theory. At low temperature, the temperature dependence of magnetization has shown that the magnetic behavior of Fe particles in granular Fe‐Cu alloys evolves from three‐ to two‐dimensional ferromagnetism as the Fe concentration is reduced. Moreover, large magnetoresistance in the granular Fe‐Cu alloys was observed at 77 K. Its magnitude is affected by the size and density of the magnetic entities, which can be controlled by varying the Fe concentration in the Cu matrix.
机译:研究了金属颗粒状FexCu1−xalloys(x=0–0.35)的结构、磁性和电输运性能。这些合金是通过使用具有极高沉积速率的共蒸发技术制造的。透射电子显微镜的观察证实,这些合金由嵌入Cu基体中的小Fe颗粒组成。铁磁性&连字符-超顺磁性转变发生在阻断温度下。阻断温度TB取决于Fe的原子分数,在80-300 K asx=0.10-0.22的范围内。在TB以上,Fe粒子表现出超顺磁弛豫。它们的磁性行为可以基于超顺磁理论来理解。在低温下,磁化强度的温度依赖性表明,随着Fe浓度的降低,晶状Fe&连字符Cu合金中Fe颗粒的磁性行为从三维铁磁性演变为二维铁磁性。此外,在77 K时观察到晶状Fe‐Cu合金的较大磁阻。它的大小受磁性实体的大小和密度的影响,这可以通过改变铜基体中的Fe浓度来控制。

著录项

  • 来源
    《journal of applied physics》 |1994年第5期|2986-2990|共页
  • 作者

    Chubing Peng; Daosheng Dai;

  • 作者单位
  • 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 英语
  • 中图分类
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