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    • 1. 发明申请
    • HIGH DENSITY DATA STORAGE
    • 高密度数据存储
    • WO2005104133B1
    • 2007-02-22
    • PCT/US2005012788
    • 2005-04-15
    • NANOCHIP INCRUST THOMAS FSTARK ROBERT NNOGGLE THOMAS LCRIBBS DANIEL F
    • RUST THOMAS FSTARK ROBERT NNOGGLE THOMAS LCRIBBS DANIEL F
    • G11B7/00G05B11/28G11B9/00G11B9/10G11C11/00G11C16/02
    • B82Y10/00G11B9/149G11C13/0004
    • Methods in accordance with the present invention can be applied, in an embodiment, to a media comprising a phase change material to alter a resolved portion of the phase change material to have a resistance different from a resistance of the bulk material. A tip having a substantially larger radius of curvature than the resolved portion can be employed by applying such methods. A substantially anisotropic columnar material can focus a current applied between the tip and the media so that the portion is narrower in width than the radius of curvature. Such highly resolved portions form bits in the media. Other objects, aspects and advantages of the invention can be obtained from reviewing the figures, specification and claims. This description is not intended to be a complete description of, or limit the scope of, the invention.
    • 在一个实施方案中,根据本发明的方法可以应用于包含相变材料的介质以改变相变材料的分辨部分以具有与散装材料的电阻不同的电阻。 通过应用这种方法,可以采用具有比分辨部分大得多的曲率半径的尖端。 基本上各向异性的柱状材料可以聚焦施加在尖端和介质之间的电流,使得该部分的宽度比曲率半径窄。 这种高度分辨的部分在媒体中形成比特。 本发明的其它目的,方面和优点可以通过阅读附图,说明书和权利要求来获得。 该描述并不是对本发明的完整描述或限制本发明的范围。
    • 2. 发明申请
    • HIGH DENSITY DATA STORAGE
    • 高密度数据存储
    • WO2005104133A3
    • 2006-12-28
    • PCT/US2005012788
    • 2005-04-15
    • NANOCHIP INCRUST THOMAS FSTARK ROBERT NNOGGLE THOMAS LCRIBBS DANIEL F
    • RUST THOMAS FSTARK ROBERT NNOGGLE THOMAS LCRIBBS DANIEL F
    • G11B7/00G05B11/28G11B9/00G11B9/10G11C11/00G11C16/02
    • B82Y10/00G11B9/149G11C13/0004
    • Methods in accordance with the present invention can be applied, in an embodiment, to a media comprising a phase change material to alter a resolved portion of the phase change material to have a resistance different from a resistance of the bulk material. A tip having a substantially larger radius of curvature than the resolved portion can be employed by applying such methods. A substantially anisotropic columnar material can focus a current applied between the tip and the media so that the portion is narrower in width than the radius of curvature. Such highly resolved portions form bits in the media. Other objects, aspects and advantages of the invention can be obtained from reviewing the figures, specification and claims. This description is not intended to be a complete description of, or limit the scope of, the invention.
    • 在一个实施方案中,根据本发明的方法可以应用于包含相变材料的介质以改变相变材料的分辨部分以具有与散装材料的电阻不同的电阻。 通过应用这种方法,可以采用具有比分辨部分大得多的曲率半径的尖端。 基本上各向异性的柱状材料可以聚焦施加在尖端和介质之间的电流,使得该部分的宽度比曲率半径窄。 这种高度分辨的部分在媒体中形成比特。 本发明的其它目的,方面和优点可以通过阅读附图,说明书和权利要求来获得。 该描述并不是对本发明的完整描述或限制本发明的范围。