首页> 外文期刊>Journal of nanoscience and nanotechnology >Stable Surface Structures and Magnetic Properties of L1_0-Ordered CoPt Thin Films According to Thin Film Layer Thickness
【24h】

Stable Surface Structures and Magnetic Properties of L1_0-Ordered CoPt Thin Films According to Thin Film Layer Thickness

机译:L1_0级CoPt薄膜根据薄膜层厚度的稳定表面结构和磁性

获取原文
获取原文并翻译 | 示例
       

摘要

Magnetic thin films are expected to be a promising substitute for existing semiconductor materials in the memory device industry due to their stable non-volatility, fast reading/writing speed, and durability. Because of the potential of thin film magnetic materials, Co-Pt alloys have attracted attention for application in magnetic memory devices due to their great magnetic anisotropy energy. In this paper, the stable surface structures of L1_0-ordered CoPt alloys on a Pt (001) surface according to the thickness of the CoPt thin films was investigated using density functional calculations. The surface phase diagram of the Co-Pt alloys was first obtained to find the most stable surface phases of Co-Pt, and finally the perpendicular A, Pt-rich, perpendicular C and Co-rich B phases were found to be the most stable Co-Pt surface phases considering a thin film thickness from 1 to 4 MLs. Through calculation of the magnetic properties and the analysis of the spin-polarized 3d-electron density of the states of these stable surface phases, the changes in the magnetic properties were found to originate from the change in the relative electron filling in the 3d_(x~2-y~2) and 3d_(z~2) orbitals of the Co atoms.
机译:磁性薄膜由于其稳定的非易失性,快速的读写速度和耐用性,有望在存储设备行业中替代现有的半导体材料。由于薄膜磁性材料的潜力,Co-Pt合金因其巨大的磁各向异性能而吸引了人们在磁性存储设备中的应用关注。本文使用密度泛函计算方法研究了根据CoPt薄膜厚度在Pt(001)表面上的L1_0级CoPt合金的稳定表面结构。首先获得Co-Pt合金的表面相图,以找到最稳定的Co-Pt表面相,最后发现垂直A,富Pt,垂直C和富Co B相最为稳定。考虑到1到4 MLs的薄膜厚度的Co-Pt表面相。通过计算这些稳定表面相的状态的磁特性并对其自旋极化的3d电子密度进行分析,发现磁特性的变化源自3d_(x Co原子的〜2-y〜2)和3d_(z〜2)轨道。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号