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    • 3. 发明授权
    • Optical storage medium comprising two nonlinear layers
    • 包括两个非线性层的光学存储介质
    • US08611202B2
    • 2013-12-17
    • US12998779
    • 2009-11-19
    • Christophe FeryLarisa Von RiewelGael Pilard
    • Christophe FeryLarisa Von RiewelGael Pilard
    • G11B7/24
    • G11B7/252G11B7/24
    • The optical storage medium comprises a substrate layer, a data layer arranged on the substrate layer, a first nonlinear layer with a first super-resolution structure arranged above the data layer, and a second nonlinear layer with a second super-resolution structure arranged above the first nonlinear layer, the first nonlinear layer comprising a material having an increased reflectivity when irradiated with a laser beam and the second nonlinear layer comprising a material showing a transparency when irradiated with a laser beam. The first nonlinear layer comprises in particular a semiconductor material of one of the III-V semiconductor family having a low band-gap. And the second nonlinear layer comprises in particular a phase change material, for example SbTe or AIST.
    • 光学存储介质包括衬底层,布置在衬底层上的数据层,布置在数据层上方的具有第一超分辨率结构的第一非线性层和布置在数据层上方的第二超分辨率结构的第二非线性层 第一非线性层,第一非线性层包括当用激光束照射时具有增加的反射率的材料,并且第二非线性层包括当用激光束照射时显示透明度的材料。 第一非线性层特别包括具有低带隙的III-V族半导体族之一的半导体材料。 并且第二非线性层特别包括相变材料,例如SbTe或AIST。
    • 4. 发明授权
    • Optical storage medium comprising a multilevel data layer
    • 包括多级数据层的光存储介质
    • US08111606B2
    • 2012-02-07
    • US12736005
    • 2009-03-05
    • Christophe FeryLarisa von RiewelGael Pilard
    • Christophe FeryLarisa von RiewelGael Pilard
    • G11B7/24
    • G11B7/24085G11B7/24
    • The optical storage medium comprises a substrate layer, a data layer, and a nonlinear layer with a super-resolution structure disposed on the data layer, wherein pits and lands having a size above a diffraction limit of a pickup for reading of the data establish a first and a second level of the data layer, and pits and lands having a size below the diffraction limit of the pickup are arranged on a further level of the data layer. In a preferred embodiment, pits having a size below the diffraction limit are arranged on a third level and lands having a size below the diffraction limit are arranged on a fourth level of the data layer. The optical storage medium is in particular a read-only optical disc comprising a phase-change material, for example AgInSbTe, for providing the super-resolution effect.
    • 光学存储介质包括衬底层,数据层和设置在数据层上的具有超分辨率结构的非线性层,其中具有大于读取数据的拾取器的衍射极限的凹坑和焊盘建立数据 数据层的第一级和第二级,并且具有低于拾取器的衍射极限的尺寸的凹坑和焊盘被布置在数据层的另一层上。 在优选实施例中,具有低于衍射极限的尺寸的凹坑被布置在第三层上,具有低于衍射极限的尺寸的平台被布置在数据层的第四层上。 光学存储介质特别是包括用于提供超分辨率效果的相变材料(例如AgInSbTe)的只读光盘。
    • 8. 发明申请
    • OPTICAL STORAGE MEDIUM COMPRISING A MULTILEVEL DATA LAYER
    • 包含多个数据层的光存储介质
    • US20110002218A1
    • 2011-01-06
    • US12736005
    • 2009-03-05
    • Christophe FeryLarisa von RiewelGael Pilard
    • Christophe FeryLarisa von RiewelGael Pilard
    • G11B7/24
    • G11B7/24085G11B7/24
    • The optical storage medium comprises a substrate layer, a data layer, and a nonlinear layer with a super-resolution structure disposed on the data layer, wherein pits and lands having a size above a diffraction limit of a pickup for reading of the data establish a first and a second level of the data layer, and pits and lands having a size below the diffraction limit of the pickup are arranged on a further level of the data layer. In a preferred embodiment, pits having a size below the diffraction limit are arranged on a third level and lands having a size below the diffraction limit are arranged on a fourth level of the data layer. The optical storage medium is in particular a read-only optical disc comprising a phase-change material, for example AgInSbTe, for providing the super-resolution effect.
    • 光学存储介质包括衬底层,数据层和设置在数据层上的具有超分辨率结构的非线性层,其中具有大于读取数据的拾取器的衍射极限的凹坑和焊盘建立数据 数据层的第一级和第二级,并且具有低于拾取器的衍射极限的尺寸的凹坑和焊盘被布置在数据层的另一层上。 在优选实施例中,具有低于衍射极限的尺寸的凹坑被布置在第三层上,具有低于衍射极限的尺寸的平台被布置在数据层的第四层上。 光学存储介质特别是包括用于提供超分辨率效果的相变材料(例如AgInSbTe)的只读光盘。
    • 10. 发明授权
    • High data capacity storage medium with protection code, method for obtaining the protection code and respective data reading apparatus
    • 具有保护代码的高数据容量存储介质,获取保护代码的方法和各自的数据读取装置
    • US07983129B2
    • 2011-07-19
    • US12455699
    • 2009-06-05
    • Gael PilardFrank PizygoddaChristophe Fery
    • Gael PilardFrank PizygoddaChristophe Fery
    • G11B7/00
    • G11B20/00086G11B7/00736G11B7/24G11B7/24085G11B23/284
    • The optical storage medium comprises a substrate layer, and a data layer disposed on the substrate layer, the data layer comprising data being arranged in tracks as marks and spaces. A protection code is coded in one of the tracks or a part of a track which code comprises marks of a first size and marks of a smaller, second size. The marks of the second size have in particular a width being smaller than the width of the marks of the first size. To obtain the protection code, a method is used comprising the steps of reading a track or a part of a track with a first laser power for obtaining a first data signal, reading the same track or the same part of a track in another step with a second laser power being different from the first laser power for obtaining a second data signal, and calculating the protection code by taking into account the first and the second data signals. The protection code may be calculated for example by a microprocessor of a respective data reading apparatus.
    • 光学存储介质包括衬底层和设置在衬底层上的数据层,数据层包括以标记和间隔布置在轨道中的数据。 保护代码被编码在轨道之一或轨道的一部分中,该代码包括第一尺寸的标记和较小的第二尺寸的标记。 第二尺寸的标记特别地具有小于第一尺寸的标记的宽度的宽度。 为了获得保护代码,使用的方法包括以下步骤:用第一激光功率读取轨道或轨道的一部分,以获得第一数据信号,在另一步骤中读取轨道的相同轨道或相同部分, 第二激光功率与用于获得第二数据信号的第一激光功率不同,并且通过考虑第一和第二数据信号来计算保护代码。 保护代码可以例如由相应的数据读取装置的微处理器来计算。