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Magnetic properties and magnetization reversal of Sm-Co(3x nm)/Co(x nm) multilayered films

机译:Sm-Co(3x nm)/ Co(x nm)多层膜的磁性能和磁化反转

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摘要

[Sm-Co (3x nm) /Co (x nm)]_(10) (x = 10, 7, 4) multilayered films have been prepared by magnetron rf-sputtering. It is found that the thickness of both hard and soft layers has important effects on phase transformation and magnetic interaction of films. With a fixed ratio of hard- to soft-layer thickness, decreasing simultaneously the thickness of these layers results in increasing coercivity. The effects of the external magnetic field during annealing depend on the Co-layer thickness (x value), mainly because of the formation of different main phases for different thickness of Co layer. For the films with x = 10 and 7, the main phase is Sm_2Co_(17) after annealed. Applying a magnetic field during annealing promotes the crystallization of films, and therefore, it increases the coercivity of the films with x = 10 and 7. Magnetic interaction has been investigated by measuring delta m and remanence magnetization. All the films show that although the exchange coupling favorable for magnetization is significant, the increase of the coercivity mainly originates from improving the pinning effects. Temperature dependence of the coercivity supports that the pinning of domain-walls constitutes a control mechanism of the coercivity. This behavior can be well understood in terms of the Gaunt's approach of the coercivity.
机译:[Sm-Co(3×nm)/ Co(xnm)] _(10)(x = 10、7、4)多层膜已通过磁控管射频溅射制备。发现硬层和软层的厚度均对膜的相变和磁相互作用具有重要影响。在硬层与软层厚度的固定比率下,同时减小这些层的厚度会导致矫顽力的增加。退火期间外部磁场的影响取决于Co层的厚度(x值),这主要是因为对于不同厚度的Co层形成了不同的主相。对于x = 10和7的薄膜,退火后主相为Sm_2Co_(17)。在退火过程中施加磁场会促进薄膜的结晶,因此会增加x = 10和7的薄膜的矫顽力。已经通过测量δm和剩磁来研究了磁性相互作用。所有的薄膜都表明尽管有利于磁化的交换耦合是显着的,但是矫顽力的增加主要来自于改善钉扎效应。矫顽力的温度依赖性支持畴壁的钉扎构成矫顽力的控制机制。根据Gaunt的矫顽力方法可以很好地理解这种行为。

著录项

  • 来源
    《Journal of Materials Research 》 |2004年第3期| p.786-794| 共9页
  • 作者单位

    Shenyang National Laboratory for Materials Science, Institute of Metal Research and International Centre for Materials Physics, Chinese Academy of Sciences, Shenyang 110016, People's Republic of China;

  • 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 工程材料学 ;
  • 关键词

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