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    • 1. 发明授权
    • Optical storage medium comprising a phase shift compensation
    • 光存储介质包括相移补偿
    • US08588049B2
    • 2013-11-19
    • US13696996
    • 2011-05-09
    • Gael PilardHerbert HoelzemannDietmar HepperStephan Knappmann
    • Gael PilardHerbert HoelzemannDietmar HepperStephan Knappmann
    • G11B7/24
    • G11B7/24G11B7/004G11B20/10222
    • The optical storage medium comprises a substrate layer, a data layer having a pit/land data structure with data arranged in tracks on the substrate layer and a nonlinear layer with a super-resolution material, wherein the data structure comprises diffractive pits and lands having a size above an optical resolution limit of a pickup for reading of the data and super-resolution pits and lands having a size below the optical resolution limit, said pits and lands having a defined length with regard to a channel bit length. A diffractive land preceding a super-resolution pit is changed by a first length depending on the laser power of the pickup, and/or a diffractive pit preceding a super-resolution land is changed by the first length depending on the laser power of the pickup, to compensate a phase shift of the super-resolution pit, respectively super-resolution land.
    • 光学存储介质包括基底层,具有凹坑/平台数据结构的数据层,其中数据被布置在衬底层上的轨道中,以及具有超分辨率材料的非线性层,其中数据结构包括衍射凹坑和具有 尺寸高于用于读取具有低于光学分辨率限制的尺寸的数据和超分辨率凹坑和平台的拾取器的光学分辨率极限,所述凹坑和平台具有关于通道位长度的限定长度。 根据拾取器的激光功率,超分辨率凹坑之前的衍射面改变第一长度,和/或超分辨率光阑之前的衍射凹坑根据拾取器的激光功率而改变第一长度 ,以补偿超分辨率坑相移超分辨率的土地。
    • 7. 发明申请
    • OPTICAL STORAGE MEDIUM COMPRISING A PHASE SHIFT COMPENSATION
    • 包含相位移位补偿的光存储介质
    • US20130058203A1
    • 2013-03-07
    • US13696996
    • 2011-05-09
    • Gael PilardHerbert HoelzemannDietmar HepperStephan Knappmann
    • Gael PilardHerbert HoelzemannDietmar HepperStephan Knappmann
    • G11B7/24
    • G11B7/24G11B7/004G11B20/10222
    • The optical storage medium comprises a substrate layer, a data layer having a pit/land data structure with data arranged in tracks on the substrate layer and a nonlinear layer with a super-resolution material, wherein the data structure comprises diffractive pits and lands having a size above an optical resolution limit of a pickup for reading of the data and super-resolution pits and lands having a size below the optical resolution limit, said pits and lands having a defined length with regard to a channel bit length. A diffractive land preceding a super-resolution pit is changed by a first length depending on the laser power of the pickup, and/or a diffractive pit preceding a super-resolution land is changed by the first length depending on the laser power of the pickup, to compensate a phase shift of the super-resolution pit, respectively super-resolution land.
    • 光学存储介质包括基底层,具有凹坑/平台数据结构的数据层,其中数据被布置在衬底层上的轨道中,以及具有超分辨率材料的非线性层,其中数据结构包括衍射凹坑和具有 尺寸高于用于读取具有低于光学分辨率限制的尺寸的数据和超分辨率凹坑和平台的拾取器的光学分辨率极限,所述凹坑和平台具有关于通道位长度的限定长度。 根据拾取器的激光功率,超分辨率凹坑之前的衍射面改变第一长度,和/或超分辨率光阑之前的衍射凹坑根据拾取器的激光功率而改变第一长度 ,以补偿超分辨率坑相移超分辨率的土地。
    • 8. 发明申请
    • APPARATUS COMPRISING A PICKUP PROVIDING MULTIPLE BEAMS
    • 包含提供多个图像的图像的装置
    • US20130058199A1
    • 2013-03-07
    • US13697075
    • 2011-05-09
    • Herbert HoelzemannStephan Knappmann
    • Herbert HoelzemannStephan Knappmann
    • G11B7/09G11B7/1353G11B7/1374
    • G11B7/0903G11B7/1353G11B7/1395G11B7/14G11B7/24079
    • The apparatus includes a pickup for reading data from a super-resolution optical disc, the pickup comprising a laser for generating a main beam, a first and a second satellite beam, the two satellite beams each having a radial offset with regard to the main beam, a third satellite beam following the first satellite beam, having the same radial offset as the first satellite beam, and a fourth satellite beam following the second satellite beam, having the same radial offset as the second satellite beam, for providing a crosstalk correction of the HF data signal. The track pitch between adjacent tracks of the optical disc is particularly below the diffraction limit of the pickup, and the light intensity of each of the first and second satellite beams and of the main beam is sufficient to provide a super-resolution effect on the optical disc and the light intensity of each of the third and fourth satellite beams is not sufficient to provide the super-resolution effect. The track pitch between adjacent tracks of the optical disc is advantageously below the diffraction limit of the pickup.
    • 该装置包括用于从超分辨率光盘读取数据的拾取器,该拾取器包括用于产生主光束的激光器,第一和第二卫星光束,所述两个卫星光束相对于主光束具有径向偏移 跟随第一卫星光束的第三卫星光束具有与第一卫星光束相同的径向偏移,以及跟随第二卫星光束的第四卫星光束,具有与第二卫星光束相同的径向偏移,用于提供串扰校正 HF数据信号。 光盘的相邻轨道之间的轨道间距特别地低于拾取器的衍射极限,并且第一和第二卫星光束和主光束中的每一个的光强度足以提供对光学器件的超分辨率效果 并且第三和第四卫星光束中的每一个的光强度不足以提供超分辨率效果。 光盘的相邻轨道之间的轨道间距有利地低于拾取器的衍射极限。
    • 10. 发明授权
    • Apparatus comprising a pickup providing multiple beams
    • 装置包括提供多个光束的拾取器
    • US08630154B2
    • 2014-01-14
    • US13697075
    • 2011-05-09
    • Herbert HoelzemannStephan Knappmann
    • Herbert HoelzemannStephan Knappmann
    • G11B7/135
    • G11B7/0903G11B7/1353G11B7/1395G11B7/14G11B7/24079
    • The apparatus includes a pickup for reading data from a super-resolution optical disc, the pickup comprising a laser for generating a main beam, a first and a second satellite beam, the two satellite beams each having a radial offset with regard to the main beam, a third satellite beam following the first satellite beam, having the same radial offset as the first satellite beam, and a fourth satellite beam following the second satellite beam, having the same radial offset as the second satellite beam, for providing a crosstalk correction of the HF data signal. The track pitch between adjacent tracks of the optical disc is particularly below the diffraction limit of the pickup, and the light intensity of each of the first and second satellite beams and of the main beam is sufficient to provide a super-resolution effect on the optical disc and the light intensity of each of the third and fourth satellite beams is not sufficient to provide the super-resolution effect. The track pitch between adjacent tracks of the optical disc is advantageously below the diffraction limit of the pickup.
    • 该装置包括用于从超分辨率光盘读取数据的拾取器,该拾取器包括用于产生主光束的激光器,第一和第二卫星光束,所述两个卫星光束相对于主光束具有径向偏移 跟随第一卫星光束的第三卫星光束具有与第一卫星光束相同的径向偏移,以及跟随第二卫星光束的第四卫星光束,具有与第二卫星光束相同的径向偏移,用于提供串扰校正 HF数据信号。 光盘的相邻轨道之间的轨道间距特别地低于拾取器的衍射极限,并且第一和第二卫星光束和主光束中的每一个的光强度足以提供对光学器件的超分辨率效果 并且第三和第四卫星光束中的每一个的光强度不足以提供超分辨率效果。 光盘的相邻轨道之间的轨道间距有利地低于拾取器的衍射极限。