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    • 42. 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
    • 43. 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。
    • 44. 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
    • 45. 发明授权
    • Magneto-optical recording medium and method of reproducing from same
    • 磁光记录介质及其再现方法
    • US5659537A
    • 1997-08-19
    • US459338
    • 1995-06-02
    • Junji HirokaneJunichiro NakayamaMichinobu MiedaAkira Takahashi
    • Junji HirokaneJunichiro NakayamaMichinobu MiedaAkira Takahashi
    • G11B11/10G11B11/105G11B7/00
    • G11B11/10593G11B11/10515G11B11/10584
    • A recording layer including a recording magnetic domain for recording thereon information is formed. A reproducing layer for reproducing information by projecting thereto a light beam is formed on the recording layer. A non-magnetic intermediate layer for intercepting a magnetic exchange coupling force exerted between the recording layer and the reproducing layer is formed between the recording layer and the reproducing layer. The reproducing layer is arranged such that the width of the stable magnetic domain on the reproducing layer at room temperature is larger than the width of the recording magnetic domain in the recording layer. At a reproducing temperature by the light beam, the width of the stable magnetic domain becomes smaller than the width of the recording magnetic domain, and the information is copied by the leakage magnetic flux of the recording magnetic domain. Depending on whether or not the information transferred to the reproducing layer is reproduced, the effects from other magnetic domain adjacent to the magnetic domain to be reproduced from the reproducing layer can be prevented, thereby enabling a high density recording of information on the recording layer.
    • 形成包括用于在其上记录信息的记录磁畴的记录层。 在记录层上形成用于通过向其投射光来再现信息的再现层。 在记录层和再现层之间形成用于截取在记录层和再现层之间施加的磁交换耦合力的非磁性中间层。 再现层被布置成使得在室温下再现层上的稳定磁畴的宽度大于记录层中记录磁畴的宽度。 在光束的再现温度下,稳定磁畴的宽度变得小于记录磁畴的宽度,并且通过记录磁畴的泄漏磁通来复制信息。 根据传送到再现层的信息是否被再现,可以防止从再现层再现的与磁畴相邻的其它磁畴的影响,从而能够在记录层上高密度地记录信息。
    • 46. 发明授权
    • Magnetic recording and reproducing apparatus having a ferrimagnetic
recording medium, a magnetic head and first and second light sources
    • 具有铁磁记录介质,磁头和第一和第二光源的磁记录和重放装置
    • US5293359A
    • 1994-03-08
    • US741932
    • 1991-08-08
    • Kenji OhtaAkira TakahashiJunsaku NakajimaYoshiteru MurakamiJunji Hirokane
    • Kenji OhtaAkira TakahashiJunsaku NakajimaYoshiteru MurakamiJunji Hirokane
    • G11B5/02G11B5/00G11B11/10G11B11/105G11B13/04
    • G11B5/00G11B2005/0021
    • A magnetic recording and reproducing apparatus using a recording medium made of a ferrimagnetic material, comprises a magnetic head for magnetically recording information on a recording area of a selected information recording track on a recording medium having a plurality of tracks and for magnetically reproducing the information from the recording medium, the magnetic head has a width larger than that of the width of the selected information recording track of the recording medium. For recording, light beams are radiated from a first light source on the recording area of the selected information recording track upon which recording is to be performed tracks to raise the temperature of the irradiated area to approximately a Curie temperature so as to allow recording only on that area. For reproduction, light beams are radiated from another light source onto areas on both sides of on a second area of the recording medium, located on both sides of the selected information recording track, to raise the temperature of the second irradiated areas to approximately a magnetic compensation temperature so as to allow reproduction only from the desired track, thus preventing crosstalk from the side tracks.
    • 使用由铁氧体材料制成的记录介质的磁记录和再现装置包括磁头,用于在具有多个轨道的记录介质上将所选择的信息记录轨道的记录区域上的信息磁记录,并用于从 记录介质中,磁头的宽度大于记录介质的选定信息记录道的宽度。 为了进行记录,光束从要进行记录的所选择的信息记录轨道的记录区域上的第一光源辐射,以将照射区域的温度升高到大约居里温度,以便仅在 那个地区。 为了再现,将光束从另一光源辐射到位于所选择的信息记录轨道的两侧的记录介质的第二区域的两侧的区域上,以将第二照射区域的温度升高到大约磁 补偿温度,以便仅允许从期望的轨道进行再现,从而防止来自侧轨的串扰。
    • 47. 发明授权
    • Magneto-optical storage media
    • 磁光存储介质
    • US06278668B1
    • 2001-08-21
    • US09442794
    • 1999-11-18
    • Junji HirokaneNoboru IwataAkira Takahashi
    • Junji HirokaneNoboru IwataAkira Takahashi
    • G11B1100
    • G11B11/10584G11B11/10515G11B11/10593
    • A magneto-optical storage medium includes: a reproduction layer exhibiting an in-plane magnetization state at room temperature and changing to a perpendicular magnetization state at a transition temperature Tp1; a supplementary reproduction layer exhibiting an in-plane magnetization state at room temperature and changing to a perpendicular magnetization state at a transition temperature Tp2; a non-magnetic intermediate layer; and a storage layer made of a perpendicular magnetization film, the layers being deposited in this order, the magneto-optical storage medium being arranged so as to satisfy: Tp1
    • 磁光存储介质包括:在室温下呈平面内的磁化状态并在转变温度Tp1处变为垂直磁化状态的再现层;在室温下呈现面​​内磁化状态的补充再生层 到转变温度Tp2的垂直磁化状态;非磁性中间层; 和由垂直磁化膜制成的存储层,这些层按此顺序沉积,磁光存储介质被布置为满足:这种布置使得磁光存储介质能够放大存储在存储层中的磁信息 并将其复制到再现层,并且其信号的周期等于或低于从存储层再现的光的衍射极限,而不减小振幅。