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    • 3. 发明授权
    • Polarization state detector systems and methods for read-out of multilevel oriented nano-structure optical media
    • 极化状态检测器系统和读取多层导向纳米结构光学介质的方法
    • US07889616B2
    • 2011-02-15
    • US11366569
    • 2006-03-03
    • David S. KuoNeil DeemanShih-Fu LeeKoichi Wago
    • David S. KuoNeil DeemanShih-Fu LeeKoichi Wago
    • G11B7/00
    • G11B7/1398G11B7/131G11B7/1395G11B7/24088
    • A polarization detection system structured for optical read-out of disc-shaped optical data/information storage and retrieval media with surfaces comprised of pits or marks configured as multilevel oriented nano-structures (ONS) with varying pit or mark orientations and widths. The polarization detection system comprises: an optical beam source; a stage for mounting and rotating an optical disc medium about a central axis; at least one photodetector; a beam splitter positioned in an optical path between the source and stage, for directing an incident beam from the source onto an optical disc mounted on the stage and a return beam from the disc onto the photodetector; and an optical polarizer positioned in an optical path between the beam splitter and the at least one photodetector, for detection and analysis of changes in polarization of the return beam effected by variation of the orientation of the walls and/or widths of the pits or marks of the disc.
    • 一种偏振检测系统,其被构造用于光学读出盘形光学数据/信息存储和回收介质,其表面包括由具有不同凹坑或标记取向和宽度的多层定向纳米结构(ONS)构成的凹坑或标记。 偏振检测系统包括:光束源; 用于围绕中心轴线安装和旋转光盘介质的台架; 至少一个光电检测器; 位于源极和级之间的光路中的分束器,用于将来自源的入射光束引导到安装在平台上的光盘上,以及从光盘到光电检测器的返回光束; 以及位于分束器和至少一个光电检测器之间的光路中的光学偏振器,用于检测和分析通过壁的取向的变化和/或凹坑或标记的宽度来实现的返回光束的偏振变化 的光盘。
    • 4. 发明申请
    • Polarization state detector systems and methods for read-out of multilevel oriented nano-structure optical media
    • 极化状态检测器系统和读取多层导向纳米结构光学介质的方法
    • US20070206480A1
    • 2007-09-06
    • US11366569
    • 2006-03-03
    • David KuoNeil DeemanShih-Fu LeeKoichi Wago
    • David KuoNeil DeemanShih-Fu LeeKoichi Wago
    • G11B7/00
    • G11B7/1398G11B7/131G11B7/1395G11B7/24088
    • A polarization detection system structured for optical read-out of disc-shaped optical data/information storage and retrieval media with surfaces comprised of pits or marks configured as multilevel oriented nano-structures (ONS) with varying pit or mark orientations and widths. The polarization detection system comprises: an optical beam source; a stage for mounting and rotating an optical disc medium about a central axis; at least one photodetector; a beam splitter positioned in an optical path between the source and stage, for directing an incident beam from the source onto an optical disc mounted on the stage and a return beam from the disc onto the photodetector; and an optical polarizer positioned in an optical path between the beam splitter and the at least one photodetector, for detection and analysis of changes in polarization of the return beam effected by variation of the orientation of the walls and/or widths of the pits or marks of the disc.
    • 一种偏振检测系统,其被构造用于光学读出盘形光学数据/信息存储和回收介质,其表面包括由具有不同凹坑或标记取向和宽度的多层定向纳米结构(ONS)构成的凹坑或标记。 偏振检测系统包括:光束源; 用于围绕中心轴线安装和旋转光盘介质的台架; 至少一个光电检测器; 位于源极和级之间的光路中的分束器,用于将来自源的入射光束引导到安装在平台上的光盘上,以及从光盘到光电检测器的返回光束; 以及位于分束器和至少一个光电检测器之间的光路中的光学偏振器,用于检测和分析通过壁的取向的变化和/或凹坑或标记的宽度来实现的返回光束的偏振变化 的光盘。
    • 8. 发明授权
    • Styrene-acrylonitrile as a resist for making patterned media
    • 苯乙烯 - 丙烯腈作为制造图案化介质的抗蚀剂
    • US06617012B1
    • 2003-09-09
    • US10112192
    • 2002-03-29
    • HongYing WangKoichi WagoNeil DeemanNobuo Kurataka
    • HongYing WangKoichi WagoNeil DeemanNobuo Kurataka
    • B32B702
    • G11B5/855B32B27/06G11B5/59633G11B5/74G11B5/82Y10S428/90Y10S977/712Y10S977/838Y10S977/887Y10T428/249921Y10T428/31678
    • A system and method for forming servo patterns on magnetic medium is disclosed. A magnetic film coated with a layer of styrene-acrylonitrile is stamped with a nickel stamper reproducing the negative image of the stamper pattern on the styrene-acrylonitrile. Ions are then accelerated towards the surface of the styrene-acrylonitrile, which stops the ions in the areas where the styrene-acrylonitrile is thick and allows the ions to penetrate through to the magnetic layer in the areas where the styrene-acrylonitrile is thin. The ions, which penetrate through to the magnetic layer, interact with the magnetic layer altering the magnetic layer's structure reducing its coercivity (Hc) and remnant moment (Mrt). This reproduces the stamped styrene-acrylonitrile pattern on the magnetic layer. The styrene-acrylonitrile is then removed by oxygen plasma etching the surface leaving behind a patterned magnetic medium.
    • 公开了一种用于在磁介质上形成伺服图案的系统和方法。 用苯乙烯 - 丙烯腈层涂覆的磁性薄膜印有镍压模,其在苯乙烯 - 丙烯腈上再现压模图案的负像。 离子然后被加速到苯乙烯 - 丙烯腈的表面,这阻止了苯乙烯 - 丙烯腈厚的区域中的离子,并允许离子穿透到苯乙烯 - 丙烯腈薄的区域中的磁性层。 穿透到磁性层的离子与磁性层相互作用,从而改变了磁层的结构,降低了矫顽力(Hc)和剩余力矩(Mrt)。 这就在磁性层上再现了印模的苯乙烯 - 丙烯腈图案。 然后通过氧等离子体蚀刻表面留下图案化的磁性介质来除去苯乙烯 - 丙烯腈。