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    • 31. 发明授权
    • Silicon carbide indents for probe storage utilizing thermomechanically activated polymer media
    • 使用热机械活化聚合物介质的探针存储的碳化硅凹痕
    • US07522512B1
    • 2009-04-21
    • US12100347
    • 2008-04-09
    • Rachel CannaraBernd W. GotsmannUrs T. DuerigHarish BhaskaranArmin W. Knoll
    • Rachel CannaraBernd W. GotsmannUrs T. DuerigHarish BhaskaranArmin W. Knoll
    • G11B9/00
    • G11B9/149B82Y10/00G11B9/04G11B11/007
    • Storing data by forming permanent indents in a preceramic polymer, on a substrate, via a chemical reaction transforming the polymer through permanent phase change into hardened, ceramic material, where the chemical reaction activation energy is supplied by heat and pressure applied by a nanoscale probe tip; reading data with the tip by obtaining a topographical signal during readout of the bits; reading data with the tip, where the substrate and ceramic material are conducting, while recording varying electrical resistance measured through the tip-sample contact as the tip slides along the surface; where a separate surface layer formed over the ceramic material including a polymeric thin film with cross-linking protects the tip during writing and readout; and where the substrate is a rigid wall material that can aid indentation by preventing the precursor polymer from accommodating stress applied by the tip with plastic deformation.
    • 通过在基底上形成永久性凹痕,通过化学反应将聚合物永久变相转化成硬化的陶瓷材料,在其中化学反应活化能由纳米尺度的探针尖端施加的热和压力提供, ; 通过在位的读出期间获得地形信号来读取尖端的数据; 在衬底和陶瓷材料导通的位置读取数据,同时记录当尖端沿着表面滑动时通过尖端样品接触测量的变化的电阻; 其中形成在陶瓷材料上的单独的表面层包括具有交联的聚合物薄膜,在写入和读出期间保护尖端; 并且其中基底是刚性壁材料,其可以通过防止前体聚合物容纳由塑料变形引起的尖端施加的应力而有助于压痕。