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首页> 外文期刊>Journal of magnetism and magnetic materials >Structural and magnetic properties of L1_0-FePt/Fe exchange coupled nano-composite thin films with high energy product
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Structural and magnetic properties of L1_0-FePt/Fe exchange coupled nano-composite thin films with high energy product

机译:具有高能积的L1_0-FePt / Fe交换耦合纳米复合薄膜的结构和磁性

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摘要

Nanoparticle-FePt/Fe bilayer thin films with different Fe layer thicknesses and [nanoparticle-FePt/Fe]_n multilayer thin films with various periods were fabricated by DC magnetron sputtering. Their structures and magnetic properties (energy product and exchange coupling) were investigated by X-ray diffraction technique and vibrating sample magnetometer, respectively. The results show that coercivities of FePt/Fe bilayer films are dropped from 10.7 kOe to 0.53 kOe with increasing Fe soft magnetic layer thickness, due to the interconnecting of FePt nano-particles by Fe-rich soft magnetic phase and decreasing of the ordering degree of L1-0-FePt phase. The critical Fe layer thickness changing the annealed film from granular to continuous microstructure is about 4 nm. For multilayer [FePt/Fe]_n films, both ordering degree of L1_0-FeFt phase and magnetic properties are improved with the number of layer periods. Moreover, a maximum energy products as high as 21.65 MGOe is obtained in the [FePt/Fe]-5 multilayer film. The enhancement of saturation magnetization and energy products can be ascribed to the high ordering degree of FePt phase as well as the strong exchange coupling among L1_0-FePt hard magnetic phase and Fe-rich soft magnetic phase.
机译:通过直流磁控溅射制备了具有不同Fe层厚度的纳米颗粒-FePt / Fe双层薄膜和具有不同周期的[纳米颗粒-FePt / Fe] _n多层薄膜。通过X射线衍射技术和振动样品磁强计分别研究了它们的结构和磁性能(能量积和交换耦合)。结果表明,随着Fe软磁性层厚度的增加,FePt / Fe双层薄膜的矫顽力从10.7 kOe下降到0.53 kOe,这是由于FePt纳米颗粒与富铁软磁相的相互连接以及FePt有序度的降低所致。 L1-0-FePt相。将退火膜从粒状转变为连续的微观结构的临界Fe层厚度约为4 nm。对于多层[FePt / Fe] _n薄膜,L1_0-FeFt相的有序度和磁性能均随层数的增加而提高。此外,在[FePt / Fe] -5多层膜中获得了高达21.65 MGOe的最大能量乘积。饱和磁化强度和能量乘积的增加可以归因于FePt相的高有序度,以及L1_0-FePt硬磁相和富铁软磁相之间的强交换耦合。

著录项

  • 来源
    《Journal of magnetism and magnetic materials》 |2013年第11期|165-170|共6页
  • 作者单位

    Key Laboratory for Anisotropy & Texture of Materials (Ministry of Education), Northeastern University, Shenyang 110819, China;

    Key Laboratory for Anisotropy & Texture of Materials (Ministry of Education), Northeastern University, Shenyang 110819, China,Laboratoire d'Etude des Microstructures et de Mecanique des Materiaux (LEM3), CNRS UMR 7239, Universite de Lorraine, 57045 Metz, France,Laboratory of Excellence on Design of Alloy Metals for low-mAss Structures (DAMAS), Universite de Lorraine, 57045 Metz, France;

    Key Laboratory for Anisotropy & Texture of Materials (Ministry of Education), Northeastern University, Shenyang 110819, China;

    Key Laboratory for Anisotropy & Texture of Materials (Ministry of Education), Northeastern University, Shenyang 110819, China;

    Laboratoire d'Etude des Microstructures et de Mecanique des Materiaux (LEM3), CNRS UMR 7239, Universite de Lorraine, 57045 Metz, France,Laboratory of Excellence on Design of Alloy Metals for low-mAss Structures (DAMAS), Universite de Lorraine, 57045 Metz, France;

    Laboratoire d'Etude des Microstructures et de Mecanique des Materiaux (LEM3), CNRS UMR 7239, Universite de Lorraine, 57045 Metz, France,Laboratory of Excellence on Design of Alloy Metals for low-mAss Structures (DAMAS), Universite de Lorraine, 57045 Metz, France;

    Key Laboratory for Anisotropy & Texture of Materials (Ministry of Education), Northeastern University, Shenyang 110819, China;

    Key Laboratory for Anisotropy & Texture of Materials (Ministry of Education), Northeastern University, Shenyang 110819, China;

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

    Exchange coupling; FePt; High energy product; Permanent magnets;

    机译:交换耦合;FePt;高能产品;永磁体;

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