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    • 5. 发明授权
    • Magneto-optical recording medium
    • 磁光记录介质
    • US6117544A
    • 2000-09-12
    • US336094
    • 1999-06-18
    • Junji HirokaneNoboru IwataAkira Takahashi
    • Junji HirokaneNoboru IwataAkira Takahashi
    • G11B11/10G11B11/105G11B5/66
    • G11B11/10593G11B11/10584G11B11/10515Y10S428/90
    • A recording layer and a flux adjustment layer have different magnetic polarities so that their magnetizations are countervailed at room temperature, with the result that a weakened leakage magnetic flux is released therefrom. A reproducing layer, a reproducing assist layer and an in-plane magnetization layer exhibit in-plane magnetization at room temperature. In a first temperature area having a temperature not more than the critical temperature of the reproducing layer, the reproducing layer 1 exhibits in-plane magnetization so that magnetization of a recording magnetic domain is not copied to the reproducing layer. In contrast, a second temperature area having a temperature rise between the critical temperature and the Curie temperature of the reproducing layer, the flux adjustment layer and the in-plane magnetization layer have reached their Curie temperatures and lost their magnetization; thus, a leakage magnetic flux generated by the magnetization of the recording magnetic domain is copied to the reproducing assist layer that is in a perpendicular magnetization state, and further copied to the reproducing layer. Moreover, in a third temperature area having a temperature rise exceeding the Curie temperature of the reproducing layer, the reproducing layer has lost its magnetization.
    • 记录层和磁通调节层具有不同的磁极性,使得它们的磁化在室温下抵消,结果是从其中释放出弱化的漏磁通。 再现层,再现辅助层和平面内磁化层在室温下表现出平面内的磁化强度。 在温度不超过再生层的临界温度的第一温度区域中,再现层1表现出平面内的磁化,使得记录磁畴的磁化不被复制到再现层。 相反,具有临界温度和再生层的居里温度之间的温度上升的第二温度区域,通量调节层和面内磁化层已经达到居里温度并失去其磁化强度; 因此,由记录磁畴的磁化产生的泄漏磁通被复制到处于垂直磁化状态的再现辅助层,并进一步复制到再现层。 此外,在温度升高超过再现层的居里温度的第三温度区域中,再现层已经失去其磁化。
    • 10. 发明授权
    • Magneto-optical recording medium and reproducing device
    • 磁光记录介质和再现装置
    • US06346322B1
    • 2002-02-12
    • US09455635
    • 1999-12-07
    • Noboru IwataJunji Hirokane
    • Noboru IwataJunji Hirokane
    • G11B566
    • G11B11/10515G11B11/10584G11B11/10593Y10S428/90Y10T428/26Y10T428/265
    • A magneto-optical recording medium includes at least a first magnetic layer, a second magnetic layer, a third magnetic layer, a non-magnetic intermediate layer and a fourth magnetic layer which are layered in this order, the first magnetic layer being formed of a perpendicularly magnetized film having a relatively small wall coercivity and a relatively large wall mobility compared with the third magnetic layer in the vicinity of a predetermined temperature, the second magnetic layer being formed of a magnetic film whose Curie temperature is lower than the Curie temperatures of the first magnetic layer and third magnetic layer, the fourth magnetic layer being a perpendicularly magnetized film with a uniform magnetization direction and forming a region having a uniform magnetization direction in the first magnetic layer by magnetostatic coupling with the first magnetic layer when the second magnetic layer is heated to a predetermined temperature or a higher temperature.
    • 磁光记录介质至少包括依次层叠的第一磁性层,第二磁性层,第三磁性层,非磁性中间层和第四磁性层,第一磁性层由 垂直磁化膜,具有相对较小的壁矫顽力和相对于第三磁性层在预定温度附近相对较大的壁迁移率,第二磁性层由居里温度低于居里温度的磁性膜形成 第一磁性层和第三磁性层,第四磁性层是具有均匀磁化方向的垂直磁化膜,并且当第二磁性层为第一磁性层时,通过与第一磁性层的静磁耦合,在第一磁性层中形成具有均匀磁化方向的区域 加热到预定温度或更高的温度。