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CoPt(FePt)-C纳米复合膜的结构与磁性
引用本文:王浩,杨辅军,薛双喜,曹歆,王君安,顾豪爽,赵子强.CoPt(FePt)-C纳米复合膜的结构与磁性[J].物理学报,2005,54(3):1415-1419.
作者姓名:王浩  杨辅军  薛双喜  曹歆  王君安  顾豪爽  赵子强
作者单位:(1)北京大学物理学院重离子物理教育部重点实验室,北京100871; (2)湖北大学物理学与电子技术学院,武汉430062
基金项目:国家自然科学基金(批准号:50371056)、湖北省及湖北大学优秀创新研究团队项目、湖北省教育厅重大科研项目资助的课题
摘    要:用磁过滤脉冲真空电弧沉积方法制备了CoPt(FePt) C纳米复合薄膜,并在不同温度下进行了退火处理,研究了薄膜中碳的含量以及退火温度对薄膜结构与磁性能的影响.制备态薄膜经过足够高的温度退火后,x射线衍射和磁力显微镜分析发现,在碳基质中生成了面心四方相的CoPt(FePt)纳米颗粒.对于特定组分为Co24Pt31C45和Fe43Pt35C22的薄膜,矫顽力以及颗粒尺寸都随退火温度的升高而增大,当退火温度为700℃时,Co24Pt31C45薄膜的矫顽力为21×105A/m,晶粒尺寸为17nm;当退火温度为650℃时,Fe43Pt35C22相应值分别为28×105A/m和105nm. 关键词: 磁记录材料 磁性薄膜 CoPt FePt纳米复合薄膜

关 键 词:磁记录材料  磁性薄膜  CoPt  FePt纳米复合薄膜
文章编号:1000-3290/2005/54(03)/1415-05
收稿时间:7/5/2004 12:00:00 AM

Structure and magnetic properties of CoPt(FePt)-C nanocomposite films
Wang Hao,YANG Fu-jun,Xue Shuang-Xi,CAO Xin,WANG Jun-An,GU Hao-shuang,ZHAO Zi-qiang.Structure and magnetic properties of CoPt(FePt)-C nanocomposite films[J].Acta Physica Sinica,2005,54(3):1415-1419.
Authors:Wang Hao  YANG Fu-jun  Xue Shuang-Xi  CAO Xin  WANG Jun-An  GU Hao-shuang  ZHAO Zi-qiang
Abstract:CoPt(FePt) C nanocomposite thin films were prepared by a pulsed filtered vacuum arc deposition technique. Thermal annealing was performed in vacuum at various temperatures. The dependence of the magnetic properties on the carbon fraction and annealing temperature was studied. Both x ray diffraction and magnetic force microscopy analyses confirmed the formation of nano crystallites of face centered tetragonal phase of CoPt or FePt in the carbon matrix after annealing at a sufficiently high temperature. For the film with particular compositions of Co24Pt31C45 and Fe43Pt35C22,the coercivity and the grain size were observed to increase with increasing annealing temperature. For the Co24Pt31C45 film at an annealing temperature of 700℃, the coercivity was 2.1×105 A/m and the grain size was about 17nm. For the Fe43Pt35C22 film at an annealing temperature of 650℃, the values were 2.8×105 A/m and 105nm,respectively.
Keywords:magnetic recording materials  magnetic film  CoPt  FePt nanocomposite
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