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Preparation of FePt magnetic nanodot arrays by nanosphere lithography
作者姓名:wu  PeiWen  FANG  YiKun  TUO  XinLin  WANG  XiaoGong  HAN  BaoShan  YUAN  Jun
作者单位:[1]Laboratory of Advanced Materials, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, China [2]National Centre for Electron Microscopy (Beijing), Tsinghua University, Beijing 100084, China [3]State Key Laboratory of Magnetism, Beijing National Laboratory for C0ndensed Physics, Instiiute of Physics, Chinese Academy of Sciences, Beijing 100080, China [4]Department oi Chemical Engineering, Tsinghua University, Beijing 100084, China
基金项目:Supported by the High-Tech Research and Development Program of China (Grant No. 2002AA302103) and the National Natural Science Foundation of China (Grant No. 10374110)
摘    要:Magnetic FePt nanodot arrays are promising candidates for making quantum magnetic recording disk. Here we introduce a hybrid method of FePt nanodot array fabrication through nanosphere lithography. This method combines the advantages of both top-down and bottom-up approaches and does not re- quire expensive equipment nor complicated processing steps.The size of magnetic FePt nanodots prepared can be as small as 40 nm.

关 键 词:FePt磁性纳米点阵列  制备  纳米球  平版印刷术
收稿时间:2006-04-04
修稿时间:2006-04-042007-02-12

Preparation of FePt magnetic nanodot arrays by nanosphere lithography
wu PeiWen FANG YiKun TUO XinLin WANG XiaoGong HAN BaoShan YUAN Jun.Preparation of FePt magnetic nanodot arrays by nanosphere lithography[J].Chinese Science Bulletin,2007,52(8):1125-1128.
Authors:PeiWen Wu  YiKun Fang  XinLin Tuo  XiaoGong Wang  BaoShan Han  Jun Yuan
Abstract:Magnetic FePt nanodot arrays are promising candidates for making quantum magnetic recording disk. Here we introduce a hybrid method of FePt nanodot array fabrication through nanosphere lithography. This method combines the advantages of both top-down and bottom-up approaches and does not re- quire expensive equipment nor complicated processing steps.The size of magnetic FePt nanodots prepared can be as small as 40 nm.
Keywords:patterned media  quantum recording  FePt  nanodot array  nanosphere lithography
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