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    • 41. 发明授权
    • Information storage device and storage media
    • 信息存储设备和存储介质
    • US08134905B2
    • 2012-03-13
    • US12261032
    • 2008-10-30
    • Takao WatanabeToshimichi ShintaniTakeshi MaedaAkemi HirotsuneTomonori Sekiguchi
    • Takao WatanabeToshimichi ShintaniTakeshi MaedaAkemi HirotsuneTomonori Sekiguchi
    • G11B7/00
    • G11B7/0025G11B7/24006
    • In an information memory apparatus having minute areas for storing information arranged in x, y and z directions three-dimensionally, parallel rays are irradiated to a memory area MA in a direction perpendicular to a z-axis to take projection images of the memory area MA while rotating the memory area MA around the z-axis little by little. The light rays irradiated at this time have a size which covers at least a direction of an x-y plane of the memory area. A computation unit PU finds data and addresses of minute areas distributed three-dimensionally by performing computation based upon the principle of computer tomography on the projection images. As for data writing, a change is given to optical transmissivity or light emission characteristics by irradiating laser light focused by a lens OL placed outside the memory area to a desired minute area and causing heat denaturation within the pertinent minute area.
    • 在具有用于以三维方式存储以x,y和z方向排列的信息的微小区域的信息存储装置中,在垂直于z轴的方向上将平行光线照射到存储区域MA,以拍摄存储区域MA的投影图像 同时围绕z轴逐渐旋转存储区域MA。 此时照射的光线具有至少覆盖存储区域的x-y平面的方向的尺寸。 计算单元PU通过基于投影图像上的计算机断层摄影的原理执行计算,找到三维分布的微小区域的数据和地址。 对于数据写入,通过将放置在存储区域外部的透镜OL聚焦的激光照射到期望的微小区域并且在相关的微小区域内引起热变性,来对光学透射率或发光特性进行改变。
    • 42. 发明授权
    • Optical disk, optical disk apparatus, and method for writing figures
    • 光盘,光盘装置以及写入图形的方法
    • US06532034B2
    • 2003-03-11
    • US09942614
    • 2001-08-31
    • Akemi HirotsuneYoshiko NishiYumiko Anzai
    • Akemi HirotsuneYoshiko NishiYumiko Anzai
    • B41J2435
    • G11B7/0037G11B7/006G11B7/0079G11B7/24038G11B7/24094G11B23/38G11B23/40
    • A method of writing a visible figure in an optical disk, including the steps of providing an application program; providing an optical disk having a recording region/film made of a phase-changing material in which a first visible figure is written, the application program storing data to write a second visible figure in the optical disk; reading data for writing the second visible figure; developing figure data which has been read into writing coordinates; converting the writing coordinates into disk coordinates; generating a laser driving pattern for each track of the recording region/film to write the second visible figure based on the developed figure data on the disk coordinates; and driving the laser based on the laser driving pattern, thereby irradiating the optical disk to write the second visible figure in the recording region/film to change the first visible figure into the second visible figure.
    • 一种将可视图形写入光盘的方法,包括提供应用程序的步骤; 提供一种具有记录区域/薄膜的光盘,所述记录区域/胶片由其中写入第一可见图形的相变材料制成,所述应用程序存储数据以将第二可见图形写入所述光盘; 读取第二个可见图形的数据; 开发已读入书写坐标的图形数据; 将书写坐标转换为磁盘坐标; 针对记录区域/胶片的每个轨道生成激光驱动图案,以基于所形成的图形数据将所述第二可见图形写在所述盘坐标上; 并且基于激光驱动图案驱动激光,从而照射光盘以将第二可见图形写入记录区域/胶片中,以将第一可见图形改变为第二可视图形。
    • 43. 发明授权
    • Information recording medium, information reproduction method and information recording method
    • 信息记录介质,信息再现方法和信息记录方法
    • US07601412B2
    • 2009-10-13
    • US11319073
    • 2005-12-28
    • Akemi HirotsuneYumiko Anzai
    • Akemi HirotsuneYumiko Anzai
    • B32B3/02G11B7/24
    • G11B7/24038G11B7/2403G11B7/24065G11B7/2433G11B7/2534G11B7/26G11B2007/25708G11B2007/2571G11B2007/25715
    • A method for mass-producing a recording mark capable of being reproduced even below the diffraction limit in the information recording medium. A medium comprising: a substrate including a first material on the surface, and a second material formed on a first area on the substrate, and a third material at least whose surface energy or surface curvature are different from the second material, and the second material and third material possess at least different chemical or physical characteristics, and at least the surface energy or surface curvature of the third material are greater than the second material, moreover a region formed of the third material contains less than 20 percent of the second material, and the second or the third material can be melted for performing recording or reproduction, so that a recording mark can be produced that is capable of being read even below the diffraction limit in the information recording medium.
    • 一种用于批量生产即使在信息记录介质中的衍射极限以下再现的记录标记的方法。 一种介质,包括:在所述表面上包括第一材料的基板和形成在所述基板上的第一区域上的第二材料和至少其表面能或表面曲率不同于所述第二材料的第三材料,并且所述第二材料 第三材料具有至少不同的化学或物理特性,并且至少第三材料的表面能或表面曲率大于第二材料,而由第三材料形成的区域含有少于第二材料的20% 并且可以熔化第二或第三材料进行记录或再现,使得可以产生能够甚至低于信息记录介质中的衍射极限的读数的记录标记。
    • 48. 发明申请
    • Information recording medium, information reproduction method and information recording method
    • 信息记录介质,信息再现方法和信息记录方法
    • US20070009702A1
    • 2007-01-11
    • US11319073
    • 2005-12-28
    • Akemi HirotsuneYumiko Anzai
    • Akemi HirotsuneYumiko Anzai
    • B32B3/02
    • G11B7/24038G11B7/2403G11B7/24065G11B7/2433G11B7/2534G11B7/26G11B2007/25708G11B2007/2571G11B2007/25715
    • A method for mass-producing a recording mark capable of being reproduced even below the diffraction limit in the information recording medium. A medium comprising: a substrate including a first material on the surface, and a second material formed on a first area on the substrate, and a third material at least whose surface energy or surface curvature are different from the second material, and the second material and third material possess at least different chemical or physical characteristics, and at least the surface energy or surface curvature of the third material are greater than the second material, moreover a region formed of the third material contains less than 20 percent of the second material, and the second or the third material can be melted for performing recording or reproduction, so that a recording mark can be produced that is capable of being read even below the diffraction limit in the information recording medium.
    • 一种用于批量生产即使在信息记录介质中的衍射极限以下再现的记录标记的方法。 一种介质,包括:在所述表面上包括第一材料的基板和形成在所述基板上的第一区域上的第二材料和至少其表面能或表面曲率不同于所述第二材料的第三材料,并且所述第二材料 第三材料具有至少不同的化学或物理特性,并且至少第三材料的表面能或表面曲率大于第二材料,而由第三材料形成的区域含有少于第二材料的20% 并且可以熔化第二或第三材料进行记录或再现,使得可以产生能够甚至低于信息记录介质中的衍射极限的读数的记录标记。