Presentation 1999/11/9
Mo AND W DOPPING EFFECTS ON CoCrPt RECORDING THIN FILM MEDIA
Ding JIN, Jian Ping Wang, Qionghui Han, Hao Gong,
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Abstract(in English) In order to optimize the magnetic recording properties for CoCrPt recording thin film media, different Mo and W doping CoCrPt based magnetic thin films were fabricated by using DC magnetron sputtering method. It was observed that Mo and W doping could increase the coercivity (H_c), at the same time maintain lower Pt content. Sole W doping showed no apparent trend of enhancing he coercivity by rising the Mo contents. For samples with less W or Mo doping, the saturation magnetization (M_s) value increased significantly when we tried to further doping. This trend was preserved for different working pressure. But for samples with higher W or Mo contents, M_s is unlikely to change much. It suggested that doping atoms may easily penetrate into Co rich grain core area and help Cr atom reset at the grain boundary. Evidences from X-ray diffraction study showed that lattice constants of Co were varied by more Mo doping. On the other hand, coercive squareness (S^*) studies found that moderate W content doping, may have less exchange coupling.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) W / Mo / doping / coercivity / S^* / XRD
Paper # MR99-30
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Committee MR
Conference Date 1999/11/9(1days)
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Registration To Magnetic Recording (MR)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Mo AND W DOPPING EFFECTS ON CoCrPt RECORDING THIN FILM MEDIA
Sub Title (in English)
Keyword(1) W
Keyword(2) Mo
Keyword(3) doping
Keyword(4) coercivity
Keyword(5) S^*
Keyword(6) XRD
1st Author's Name Ding JIN
1st Author's Affiliation Data Storage Institute, 5 Engineering Drive 1:Material Science Department, National University of Singapore()
2nd Author's Name Jian Ping Wang
2nd Author's Affiliation Data Storage Institute, 5 Engineering Drive 1
3rd Author's Name Qionghui Han
3rd Author's Affiliation Data Storage Institute, 5 Engineering Drive 1
4th Author's Name Hao Gong
4th Author's Affiliation Material Science Department, National University of Singapore
Date 1999/11/9
Paper # MR99-30
Volume (vol) vol.99
Number (no) 420
Page pp.pp.-
#Pages 7
Date of Issue