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    • 3. 发明授权
    • Magneto-optical recording medium having two reproduction layers and a
method for reproducing thereof
    • 具有两个再现层的磁光记录介质及其再现方法
    • US5633838A
    • 1997-05-27
    • US582481
    • 1996-01-03
    • Junji HirokaneJunichiro NakayamaMichinobu MiedaAkira Takahashi
    • Junji HirokaneJunichiro NakayamaMichinobu MiedaAkira Takahashi
    • G11B11/10G11B11/105G11B11/00
    • G11B11/10515G11B11/10586
    • A non-magnetic intermediate layer is provided between a reproductive layer and a recording layer. The reproductive layer is composed of a first reproductive layer and a second reproductive layer. When the first reproductive layer has a temperature that is higher than a first critical temperature, its stable magnetic domain width becomes smaller than a recording magnetic domain width so that the magnetization is reversed. When the second reproductive layer has a temperature that is higher than a second critical temperature, its stable magnetic domain width becomes larger than the recording magnetic domain width so that the reversed magnetic domain is collapsed. The first critical temperature is lower than the second critical temperature. A reproductive output having abrupt rising and falling can be obtained by the generation and the collapse of the reverse magnetic domain on the reproductive layer. For this reason, higher density recording required for larger capacity can be achieved.
    • 在生殖层和记录层之间设置非磁性中间层。 生殖层由第一生殖层和第二生殖层组成。 当第一生殖层具有高于第一临界温度的温度时,其稳定的磁畴宽度变得小于记录磁畴宽度,使得磁化反转。 当第二生殖层具有高于第二临界温度的温度时,其稳定的磁畴宽度变得大于记录磁畴宽度,使得反向磁畴被折叠。 第一临界温度低于第二临界温度。 具有突然上升和下降的生殖输出可以通过生殖层上的反向磁畴的产生和崩溃获得。 为此,可以实现更大容量所需的更高密度的记录。
    • 7. 发明授权
    • Magneto-optical recording medium and method of recording and reproducing
using the same
    • 磁光记录介质及使用其的记录和再现方法
    • US5683803A
    • 1997-11-04
    • US433088
    • 1995-05-03
    • Junichiro NakayamaMichinobu MiedaJunji HirokaneAkira TakahashiKenji Ohta
    • Junichiro NakayamaMichinobu MiedaJunji HirokaneAkira TakahashiKenji Ohta
    • G11B11/10G11B11/105G11B5/66B32B5/16
    • G11B11/10586G11B11/10506G11B11/10515G11B11/10523Y10S428/90Y10T428/26Y10T428/265
    • A magneto-optical recording medium includes a first magnetic layer and a second magnetic layer being laminated. When information is to be recorded on the first magnetic layer, first, a magnetization direction in the second magnetic layer is arranged in one direction with an application of an initialization magnetic field. Then, an intensity modulated light beam is projected while applying thereto a recording magnetic field so as to change the magnetization direction in the second magnetic layer. Thereafter, the magnetization direction in the second magnetic layer is copied to the first magnetic layer, thereby recording information. The first magnetic layer has a magnetization in an intermediate direction between a perpendicular direction and an in-plane direction at room temperature, while has a perpendicular magnetization at above a predetermined temperature. Therefore, a smaller exchange coupling force is exerted from the first magnetic layer to the second magnetic layer at room temperature, thereby enabling a rewriting information with a smaller initialization magnetic field compared with the conventional method, thereby achieving a reduction in size of the apparatus and power conservation.
    • 磁光记录介质包括层叠的第一磁性层和第二磁性层。 当要在第一磁性层上记录信息时,首先,通过施加初始化磁场,将第二磁性层中的磁化方向布置在一个方向上。 然后,施加强度调制光束,同时向其施加记录磁场,以改变第二磁性层中的磁化方向。 此后,将第二磁性层中的磁化方向复制到第一磁性层,从而记录信息。 第一磁性层在室温下具有在垂直方向和面内方向之间的中间方向上的磁化强度,同时具有高于预定温度的垂直磁化强度。 因此,与常规方法相比,在室温下从第一磁性层向第二磁性层施加较小的交换耦合力,从而能够实现与常规方法相比具有较小初始化磁场的重写信息,从而实现装置的尺寸减小 省电。
    • 8. 发明授权
    • Magneto-optical recording medium
    • 磁光记录介质
    • US5982713A
    • 1999-11-09
    • US719753
    • 1996-09-25
    • Junichiro NakayamaJunji HirokaneMichinobu MiedaAkira Takahashi
    • Junichiro NakayamaJunji HirokaneMichinobu MiedaAkira Takahashi
    • G11B11/10G11B11/105G11B11/00
    • G11B11/10586
    • A magneto-optical recording medium includes first, second, and third magnetic layers laminated in this order. The first magnetic layer, made of a rare earth-transition metal alloy, has a great coercive force at room temperature and is transition metal rich in a temperature range between room temperature and a Curie temperature of the first magnetic layer. The second magnetic layer, made of a rare earth-transition metal alloy, has a Curie temperature higher than that of the first magnetic layer and is rare-earth metal rich at room temperature. The third magnetic layer, made of a rare earth-transition metal alloy, has a Curie temperature higher than that of the first magnetic layer, and a compensation temperature falling in a temperature range between room temperature and the Curie temperature of the third magnetic layer. A magnetization of the third magnetic layer is transferred to the first magnetic layer at a temperature higher than room temperature. A perpendicular magnetic anisotropy Ku3 satisfies 0.3.times.10.sup.6 erg/cc
    • 磁光记录介质包括依次层叠的第一,第二和第三磁性层。 由稀土 - 过渡金属合金制成的第一磁性层在室温下具有很大的矫顽力,并且是在室温和第一磁性层的居里温度之间的温度范围内富含过渡金属。 由稀土 - 过渡金属合金制成的第二磁性层的居里温度高于第一磁性层的居里温度,并且在室温下富含稀土金属。 由稀土 - 过渡金属合金制成的第三磁性层的居里温度高于第一磁性层的居里温度,并且补偿温度落在室温和第三磁性层的居里温度之间的温度范围内。 在高于室温的温度下将第三磁性层的磁化转移到第一磁性层。 垂直磁各向异性Ku3满足0.3×10 6 erg / cc
    • 9. 发明授权
    • Magneto-optical recording medium having a plurality of magnetic layers
    • 具有多个磁性层的磁光记录介质
    • US5838645A
    • 1998-11-17
    • US866594
    • 1997-05-30
    • Junji HirokaneMichinobu MiedaJunichiro NakayamaAkira Takahashi
    • Junji HirokaneMichinobu MiedaJunichiro NakayamaAkira Takahashi
    • G11B11/10G11B11/105G11B11/00
    • G11B11/10515G11B11/10586
    • A magneto-optical disk provided with a record layer having a recording magnetic domain where data are recorded, an auxiliary reproduction layer for transferring the record data in the record layer to a reproduction layer by generating a floating magnetic field corresponding to the data in the record layer, and the reproduction layer from which the data are read out through irradiation of a light beam, which are sequentially layered while interposing nonmagnetic intermediate layers therebetween. The stable magnetic domain width in the auxiliary reproduction layer is shorter than the recording magnetic domain width at room temperature and extends as the temperature rises and becomes longer at or above a first temperature. The stable magnetic domain width in the reproduction layer is longer than the recording magnetic domain width at room temperature and lessens as the temperature rises and becomes shorter at or above a second temperature which is lower than the first temperature. The first and second temperatures satisfy a condition expressed as: room temperature
    • 具有记录数据的记录磁畴的磁光盘,用于通过产生与记录中的数据相对应的浮动磁场将记录层中的记录数据传送到再现层的辅助再现层 层,以及通过照射光束从中读出数据的再现层,它们在其间插入非磁性中间层的顺序层叠。 辅助再生层中的稳定的磁畴宽度比室温下的记录磁畴宽度短,随着温度升高而延长,在第一温度以上也变长。 再生层中的稳定的磁畴宽度比室温下的记录磁畴宽度长,随着温度的升高而降低,在比第一温度低的第二温度以上也变短。 第一和第二温度满足条件表示为:室温<第二温度<第一温度APPROXLESS光束点中的最大温度。 因此,在再现层中立即产生并擦除反向磁畴,并且所得到的再现信号是矩形信号,从而可以提供能够精确地再现高密度记录数据的磁光记录介质。
    • 10. 发明授权
    • Magneto-optical recording medium having a plurality of magnetic layers
    • 具有多个磁性层的磁光记录介质
    • US5684764A
    • 1997-11-04
    • US595259
    • 1996-02-01
    • Junji HirokaneMichinobu MiedaJunichiro NakayamaAkira Takahashi
    • Junji HirokaneMichinobu MiedaJunichiro NakayamaAkira Takahashi
    • G11B11/10G11B11/105G11B11/00
    • G11B11/10515G11B11/10586
    • A magneto-optical disk provided with a record layer having a recording magnetic domain where data are recorded, an auxiliary reproduction layer for transferring the record data in the record layer to a reproduction layer by generating a floating magnetic field corresponding to the data in the record layer, and the reproduction layer from which the data are read out through irradiation of a light beam, which are sequentially layered while interposing non-magnetic intermediate layers therebetween. The stable magnetic domain width in the auxiliary reproduction layer is shorter than the recording magnetic domain width at room temperature and extends as the temperature rises and becomes longer at or above a first temperature. The stable magnetic domain width in the reproduction layer is longer than the recording magnetic domain width at room temperature and lessens as the temperature rises and becomes shorter at or above a second temperature which is lower than the first temperature. The first and second temperatures satisfy a condition expressed as: room temperature
    • 具有记录数据的记录磁畴的磁光盘,用于通过产生与记录中的数据相对应的浮动磁场将记录层中的记录数据传送到再现层的辅助再现层 层,以及通过照射光束从中读出数据的再现层,它们在介于其间的非磁性中间层的顺序层叠。 辅助再生层中的稳定的磁畴宽度比室温下的记录磁畴宽度短,随着温度升高而延长,在第一温度以上也变长。 再生层中的稳定的磁畴宽度比室温下的记录磁畴宽度长,随着温度的升高而降低,在比第一温度低的第二温度以上也变短。 第一和第二温度满足表示为:室温<第二温度<第一温度