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    • 1. 发明授权
    • Over write capable magnetooptical recording method, and magnetooptical
recording apparatus and medium used therefor
    • 过写能力磁光记录方法,以及用于其的磁光记录装置和介质
    • US5367507A
    • 1994-11-22
    • US91913
    • 1993-07-16
    • Masatoshi SatoJun SaitoHideki Akasaka
    • Masatoshi SatoJun SaitoHideki Akasaka
    • G11B11/105G11B13/04
    • G11B11/105G11B11/10506G11B11/10515G11B11/10519G11B11/10521G11B11/10586
    • A magnetooptical recording method for recording data using a bit having upward-magnetization and a bit having downward-magnetization on a recording layer of a magnetooptical recording medium comprises the steps of using, as the medium, a multilayered magnetic recording medium consisting of a first layer having a perpendicular magnetic anisotropy acting as a recording layer, and a second layer having a perpendicular magnetic anisotropy acting as a reference layer; moving the medium; applying an initial field so that, before recording, the direction of magnetization of the recording layer is left unchanged, and that of the reference layer is aligned either upward or downward; radiating a laser beam onto the medium; pulse modulating an intensity of the laser beam in accordance with binary data to be recorded; when the laser beam is radiated, applying a bias field to the irradiated portion; and when the intensity of the pulse-modulated laser beam is at high level, forming one of the bit having upward-magnetization and that having downward-magnetization, and when the intensity of the pulse-modulated laser beam is at low level, forming the other bit.
    • 使用具有向上磁化的位和在磁光记录介质的记录层上具有向下磁化的位的数据记录数据的磁光记录方法包括以下步骤:使用由第一层构成的多层磁记录介质 具有作为记录层的垂直磁各向异性,和具有作为参考层的垂直磁各向异性的第二层; 移动媒体; 施加初始场,使得在记录之前,记录层的磁化方向保持不变,并且参考层的磁化方向向上或向下排列; 将激光束照射到介质上; 根据要记录的二进制数据对激光束的强度进行脉冲调制; 当激光束被照射时,向照射部分施加偏置场; 并且当脉冲调制激光束的强度处于高电平时,形成具有向上磁化并具有向下磁化的位之一,并且当脉冲调制激光束的强度处于低电平时,形成 其他位
    • 2. 发明授权
    • Magneto-optical reproducing method
    • 磁光再现方法
    • US5440531A
    • 1995-08-08
    • US275662
    • 1994-07-15
    • Masatoshi SatoJun SaitoHideki Akasaka
    • Masatoshi SatoJun SaitoHideki Akasaka
    • G11B11/105G11B13/04
    • G11B11/10586G11B11/105G11B11/10506G11B11/10519G11B11/10521
    • A magnetooptical recording method for recording data using a bit having upward-magnetization and a bit having downward-magnetization on a recording layer of a magnetooptical recording medium comprises the steps of using, as the medium, a multilayered magnetic recording medium consisting of a first layer having a perpendicular magnetic anisotropy acting as a recording layer, and a second layer having a perpendicular magnetic anisotropy acting as a reference layer; moving the medium; applying an initial field so that, before recording, the direction of magnetization of the recording layer is left unchanged, and that of the reference layer is aligned either upward or downward; radiating a laser beam onto the medium; pulse modulating an intensity of the laser beam in accordance with binary data to be recorded; when the laser beam is radiated, applying a bias field to the irradiated portion; and when the intensity of the pulse-modulated laser beam is at high level, forming one of the bit having upward-magnetization and that having downward-magnetization, and when the intensity of the pulse-modulated laser beam is at low level, forming the other bit.
    • 使用具有向上磁化的位和在磁光记录介质的记录层上具有向下磁化的位的数据记录数据的磁光记录方法包括以下步骤:使用由第一层构成的多层磁记录介质 具有作为记录层的垂直磁各向异性,和具有作为参考层的垂直磁各向异性的第二层; 移动媒体; 施加初始场,使得在记录之前,记录层的磁化方向保持不变,并且参考层的磁化方向向上或向下排列; 将激光束照射到介质上; 根据要记录的二进制数据对激光束的强度进行脉冲调制; 当激光束被照射时,向照射部分施加偏置场; 并且当脉冲调制激光束的强度处于高电平时,形成具有向上磁化并具有向下磁化的位之一,并且当脉冲调制激光束的强度处于低电平时,形成 其他位
    • 3. 发明授权
    • Over write capable magnetooptical recording method, and magnetooptical
recording apparatus and medium used therefor
    • 过写能力磁光记录方法,以及用于其的磁光记录装置和介质
    • US5239524A
    • 1993-08-24
    • US453255
    • 1989-12-20
    • Masatoshi SatoJun SaitoHideki Akasaka
    • Masatoshi SatoJun SaitoHideki Akasaka
    • G11B11/105
    • G11B11/10586G11B11/105G11B11/10506G11B11/10519G11B11/10521
    • A magnetooptical recording method for recording data using a bit having upward-magnetization and a bit having downward-magnetization on a recording layer of a magnetooptical recording medium comprises the steps of using, as the medium, a multilayered magnetic recording medium consisting of a first layer having a perpendicular magnetic anisotropy acting as a recording layer, and a second layer having a perpendicular magnetic anisotropy acting as a reference layer; moving the medium; applying an initial field so that, before recording, the direction of magnetization of the recording layer is left unchanged, and that of the reference layer is aligned either upward or downward; radiating a laser beam onto the medium; pulse modulating an intensity of the laser beam in accordance with binary data to be recorded; when the laser beam is radiated, applying a bias field to the irradiated portion; and when the intensity of the pulse-modulated laser beam is at high level, forming one of the bit having upward-magnetization and that having downward-magnetization, and when the intensity of the pulse-modulated laser beam is at low level, forming the other bit.
    • 使用具有向上磁化的位和在磁光记录介质的记录层上具有向下磁化的位的数据记录数据的磁光记录方法包括以下步骤:使用由第一层构成的多层磁记录介质 具有作为记录层的垂直磁各向异性,和具有作为参考层的垂直磁各向异性的第二层; 移动媒体; 施加初始场,使得在记录之前,记录层的磁化方向保持不变,并且参考层的磁化方向向上或向下排列; 将激光束照射到介质上; 根据要记录的二进制数据对激光束的强度进行脉冲调制; 当激光束被照射时,向照射部分施加偏置场; 并且当脉冲调制激光束的强度处于高电平时,形成具有向上磁化并具有向下磁化的位之一,并且当脉冲调制激光束的强度处于低电平时,形成 其他位
    • 5. 发明授权
    • Magnetooptical recording method and apparatus using multi-layered media
    • 磁光记录方法和使用多层介质的设备
    • US5539709A
    • 1996-07-23
    • US92686
    • 1993-07-16
    • Masatoshi SatoJun SaitoHideki Akasaka
    • Masatoshi SatoJun SaitoHideki Akasaka
    • G11B11/105G11B11/00
    • G11B11/10586G11B11/105G11B11/10506G11B11/10519G11B11/10521
    • A magnetooptical recording method for recording data using a bit having upward-magnetization and a bit having downward-magnetization on a recording layer of a magnetooptical recording medium comprises the steps of using, as the medium, a multilayered magnetic recording medium consisting of a first layer having a perpendicular magnetic anisotropy acting as a recording layer, and a second layer having a perpendicular magnetic anisotropy acting as a reference layer; moving the medium; applying an initial field so that, before recording, the direction of magnetization of the recording layer is left unchanged, and that of the reference layer is aligned either upward or downward; radiating a laser beam onto the medium; pulse modulating an intensity of the laser beam in accordance with binary data to be recorded; when the laser beam is radiated, applying a bias field to the irradiated portion; and when the intensity of the pulse-modulated laser beam is at high level, forming one of the bit having upward-magnetization and that having downward-magnetization, and when the intensity of the pulse-modulated laser beam is at low level, forming the other bit.
    • 使用具有向上磁化的位和在磁光记录介质的记录层上具有向下磁化的位的数据记录数据的磁光记录方法包括以下步骤:使用由第一层构成的多层磁记录介质 具有作为记录层的垂直磁各向异性,和具有作为参考层的垂直磁各向异性的第二层; 移动媒体; 施加初始场,使得在记录之前,记录层的磁化方向保持不变,并且参考层的磁化方向向上或向下排列; 将激光束照射到介质上; 根据要记录的二进制数据对激光束的强度进行脉冲调制; 当激光束被照射时,向照射部分施加偏置场; 并且当脉冲调制激光束的强度处于高电平时,形成具有向上磁化并具有向下磁化的位之一,并且当脉冲调制激光束的强度处于低电平时,形成 其他位
    • 8. 发明授权
    • Multilayered magnetooptical recording medium
    • 多层磁光记录介质
    • US5458987A
    • 1995-10-17
    • US91904
    • 1993-07-16
    • Masatoshi SatoJun SaitoHideki Akasaka
    • Masatoshi SatoJun SaitoHideki Akasaka
    • G11B11/105G11B5/66
    • G11B11/10519G11B11/105G11B11/10506G11B11/10521G11B11/10586Y10S428/90Y10S430/146Y10T428/12493Y10T428/12771Y10T428/12861Y10T428/12951
    • A magnetooptical recording method for recording data using a bit having upward-magnetization and a bit having downward-magnetization on a recording layer of a magnetooptical recording medium comprises the steps of using, as the medium, a multilayered magnetic recording medium consisting of a first layer having a perpendicular magnetic anisotropy acting as a recording layer, and a second layer having a perpendicular magnetic anisotropy acting as a reference layer; moving the medium; applying an initial field so that, before recording, the direction of magnetization of the recording layer is left unchanged, and that of the reference layer is aligned either upward or downward; radiating a laser beam onto the medium; pulse modulating an intensity of the laser beam in accordance with binary data to be recorded; when the laser beam is radiated, applying a bias field to the irradiated portion; and when the intensity of the pulse-modulated laser beam is at high level, forming one of the bit having upward-magnetization and that having downward-magnetization, and when the intensity of the pulse-modulated laser beam is at low level, forming the other bit.
    • 使用具有向上磁化的位和在磁光记录介质的记录层上具有向下磁化的位的数据记录数据的磁光记录方法包括以下步骤:使用由第一层构成的多层磁记录介质 具有作为记录层的垂直磁各向异性,和具有作为参考层的垂直磁各向异性的第二层; 移动媒体; 施加初始场,使得在记录之前,记录层的磁化方向保持不变,并且参考层的磁化方向向上或向下排列; 将激光束照射到介质上; 根据要记录的二进制数据对激光束的强度进行脉冲调制; 当激光束被照射时,向照射部分施加偏置场; 并且当脉冲调制激光束的强度处于高电平时,形成具有向上磁化并具有向下磁化的位之一,并且当脉冲调制激光束的强度处于低电平时,形成 其他位
    • 9. 发明授权
    • Over write capable magnetooptical recording method using two beams, and
magnetooptical recording apparatus therefor
    • 使用两个光束的写可写磁光记录方法及其光磁记录装置
    • US5014252A
    • 1991-05-07
    • US570978
    • 1990-08-22
    • Hideki AkasakaMasatoshi Sato
    • Hideki AkasakaMasatoshi Sato
    • G11B11/105
    • G11B11/10586G11B11/10506G11B11/10519
    • A magnetooptical recording method for recording data using a bit having upward-magnetization and a bit having downward-magnetization on a recording layer of a magnetooptical-recording medium comprises the steps of using, as the medium, a multilayered magnetic recording medium consisting of a first layer having a perpendicular magnetic anisotropy acting as a recording layer, and a second layer having a perpendicular magnetic anisotropy acting as a reference layer; moving the medium; applying an initial field so that, before recording, the direction of magnetization of the recording layer is left unchanged and that of the reference layer is aligned either upward or downward; radiating two adjacent laser beams, i.e., a leading beam and a trailing beam onto the medium; the leading beam being an erasing beam of low level which is not modulated in principle; the trailing beam is a writing beam which is pulse modulated between high level and basis level in accordance with binary data to be recorded; and the basis level being able to have an intensity equal to or lower than the low level and to be zero level; when the trailing laser beam is radiated, applying a bias field to the irradiated portion; and when the intensity of the pulse-modulated laser beam is at high level, forming one of the bit having upward-magnetization, and when the leading low-level laser beam is radiated, forming the other bit.
    • 使用具有向上磁化的位和在磁光记录介质的记录层上具有向下磁化的位的数据记录数据的磁光记录方法包括以下步骤:将作为介质的多层磁记录介质用作第一 具有作为记录层的垂直磁各向异性的层和具有作为参考层的垂直磁各向异性的第二层; 移动媒体; 施加初始场,使得在记录之前,记录层的磁化方向保持不变,并且参考层的磁化方向向上或向下排列; 将两个相邻的激光束,即前导光束和后向光束照射到介质上; 前导光束是原则上未调制的低电平擦除光束; 拖尾光束是根据要记录的二进制数据在高电平和基准电平之间进行脉冲调制的写入光束; 并且基准能够具有等于或低于低水平的强度并且为零水平; 当后向激光束被照射时,向照射部分施加偏置场; 并且当脉冲调制激光束的强度处于高电平时,形成具有向上磁化的位之一,并且当引导低级激光束被辐射时,形成另一位。