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    • 1. 发明授权
    • Magneto-optical recording medium and method of reproducing
magneto-optical information using thereof
    • 磁光记录介质及其再现磁光信息的方法
    • US5637394A
    • 1997-06-10
    • US356857
    • 1994-12-15
    • Junsaku NakajimaNaoyasu IketaniYoshiteru MurakamiAkira TakahashiHiroyuki KatayamaKenji Ohta
    • Junsaku NakajimaNaoyasu IketaniYoshiteru MurakamiAkira TakahashiHiroyuki KatayamaKenji Ohta
    • G11B11/105G11B5/66
    • G11B11/10586G11B11/10515G11B11/10584Y10S428/90Y10T428/26Y10T428/265
    • A magneto-optical recording medium comprising a readout layer and a recording layer has a relationship that an external magnetic field H1 is smaller than an external magnetic field H4, where the H1 is a minimum external magnetic field necessary to make a magnetization direction of the readout layer direct to the direction reverse to a magnetization direction of the recording layer substantially at the room temperature, and the H4 is a maximum external magnetic field necessary to make the magnetization direction of the readout layer direct to the direction same as the magnetization direction of the recording layer at an high temperature not lower than a predetermined temperature. Moreover, the magneto-optical disk is provided, between the readout layer and the recording layer, with an intermediate layer which inhibits an effective bias magnetic field from the recording layer to the readout layer at the room temperature. Since it is possible to reproduce only the information in the high-temperature area close to the center of the laser beam irradiated during reproducing, recording density is improved. Furthermore, since an initializing magnetic field at reproducing is not necessary and the reproducing magnetic field can be made smaller, the apparatus can be made smaller and the electric power consumption can be decreased.
    • 包括读出层和记录层的磁光记录介质具有外部磁场H1小于外部磁场H4的关系,其中H1是使读出磁化方向发生所需的最小外部磁场 层直接与基本上在室温下的记录层的磁化方向相反的方向,并且H4是使读出层的磁化方向直到与磁化方向相同的方向所需的最大外部磁场 记录层在不低于预定温度的高温下进行。 此外,在读出层和记录层之间设置磁光盘,其中间层在室温下抑制从记录层到读出层的有效偏置磁场。 由于只能再现靠近在再现期间照射的激光束的中心的高温区域的信息,所以记录密度提高。 此外,由于不需要再现时的初始化磁场并且可以使再现磁场更小,所以可以使装置更小,并且可以降低电力消耗。
    • 5. 发明授权
    • Magneto-optical recording medium having intermediate layer of in plane magnetization
    • 具有平面磁化中间层的磁光记录介质
    • US06272077B1
    • 2001-08-07
    • US09479256
    • 2000-01-07
    • Akira TakahashiMichinobu MiedaNaoyasu IketaniGo MoriJunsaku NakajimaYoshiteru MurakamiJunji Hirokane
    • Akira TakahashiMichinobu MiedaNaoyasu IketaniGo MoriJunsaku NakajimaYoshiteru MurakamiJunji Hirokane
    • G11B1110
    • G11B11/10584G11B11/10515G11B11/10586G11B11/10593
    • A magneto-optical memory medium according to the present invention comprises a reproducing layer, which has in-plane magnetization at room temperature and perpendicular magnetization when heated to above a predetermined temperature by a reproducing light beam; a recording layer, which is magnetostatically coupled to the reproducing layer; and an in-plane magnetized layer, provided adjacent to the recording layer, which has a Curie temperature at the above-mentioned predetermined temperature. In this medium, at temperatures below the predetermined temperature, signals recorded at high density in the recording layer are masked, and the above-mentioned magnetostatic coupling is suppressed, by magnetic masking by the in-plane magnetized layer. At temperatures above the predetermined temperature, however, within a domain forming part of the in-plane magnetized layer, the recording layer and the reproducing layer are magnetostatically coupled, and a recording bit of the recording layer is copied and expanded to a magnetic domain in the reproducing layer. Accordingly, with this medium, by reproducing from an expanded magnetic domain of the reproducing layer, even information from recording bits recorded at high density can be reproduced with high signal quality.
    • 根据本发明的磁光存储介质包括再现层,其在室温下具有面内磁化并且通过再现光束被加热到高于预定温度时的垂直磁化; 记录层,其被静磁耦合到再现层; 以及与记录层相邻的面内磁化层,居里温度在上述预定温度。 在该介质中,在低于预定温度的温度下,记录层中以高密度记录的信号被屏蔽,并且通过面内磁化层的磁屏蔽来抑制上述静磁耦合。 然而,在高于预定温度的温度下,在形成面内磁化层的一部分的区域内,磁静电耦合记录层和再现层,并且将记录层的记录位复制并扩展到磁畴中 再现层。 因此,利用该介质,通过从再现层的扩展磁畴再现,可以以高信号质量再现以高密度记录的记录位的信息。
    • 6. 发明授权
    • Magneto-optical recording medium having intermediate layer of in-plane
magnetization
    • 具有平面内磁化中间层的磁光记录介质
    • US06147939A
    • 2000-11-14
    • US32985
    • 1998-03-02
    • Akira TakahashiMichinobu MiedaNaoyasu IketaniGo MoriJunsaku NakajimaYoshiteru MurakamiJunji Hirokane
    • Akira TakahashiMichinobu MiedaNaoyasu IketaniGo MoriJunsaku NakajimaYoshiteru MurakamiJunji Hirokane
    • G11B11/105G11B11/00
    • G11B11/10584G11B11/10515G11B11/10586G11B11/10593
    • A magneto-optical memory medium according to the present invention comprises a reproducing layer, which has in-plane magnetization at room temperature and perpendicular magnetization when heated to above a predetermined temperature by a reproducing light beam; a recording layer, which is magnetostatically coupled to the reproducing layer; and an in-plane magnetized layer, provided adjacent to the recording layer, which has a Curie temperature at the above-mentioned predetermined temperature. In this medium, at temperatures below the predetermined temperature, signals recorded at high density in the recording layer are masked, and the above-mentioned magnetostatic coupling is suppressed, by magnetic masking by the in-plane magnetized layer. At temperatures above the predetermined temperature, however, within a domain forming part of the in-plane magnetized layer, the recording layer and the reproducing layer are magnetostatically coupled, and a recording bit of the recording layer is copied and expanded to a magnetic domain in the reproducing layer. Accordingly, with this medium, by reproducing from an expanded magnetic domain of the reproducing layer, even information from recording bits recorded at high density can be reproduced with high signal quality.
    • 根据本发明的磁光存储介质包括再现层,其在室温下具有面内磁化并且通过再现光束被加热到高于预定温度时的垂直磁化; 记录层,其被静磁耦合到再现层; 以及与记录层相邻的面内磁化层,居里温度在上述预定温度。 在该介质中,在低于预定温度的温度下,记录层中以高密度记录的信号被屏蔽,并且通过面内磁化层的磁屏蔽来抑制上述静磁耦合。 然而,在高于预定温度的温度下,在形成面内磁化层的一部分的区域内,磁静电耦合记录层和再现层,并且将记录层的记录位复制并扩展到磁畴中 再现层。 因此,利用该介质,通过从再现层的扩展磁畴再现,可以以高信号质量再现以高密度记录的记录位的信息。
    • 7. 发明授权
    • Magneto-optical recording medium having a readout layer with varying
composition and curie temperature
    • 磁光记录介质具有不同组成和居里温度的读出层
    • US5563852A
    • 1996-10-08
    • US350317
    • 1994-12-05
    • Yoshiteru MurakamiNaoyasu IketaniAkira TakahashiKenji Ohta
    • Yoshiteru MurakamiNaoyasu IketaniAkira TakahashiKenji Ohta
    • C23C14/18C23C14/34C23C14/56G11B11/105G11B5/66
    • C23C14/3414C23C14/185C23C14/568G11B11/10582G11B11/10586G11B11/10589
    • A magneto-optical recording medium includes a readout layer has in-plane magnetization at room temperature and in which a transition occurs from in-plane magnetization to perpendicular magnetization when temperature thereof is raised, and a recording layer for recording thereon information. The composition of the readout layer varies in a direction perpendicular to the surface thereof, and in the readout layer, the Co density on the light incident side is higher than the Co density on the interface between the readout layer and the recording layer. Therefore, the Curie temperature on the reproducing light incident side of the readout layer is high and the the polar Kerr rotation angle in reproducing increases, thereby achieving improvements in a reproducing signal quality. On the other hand, since the Curie temperature on the interface is low, the shift of the threshold temperature at which a transition occurs from in-plane to perpendicular by the magnetic interaction between the layers can be suppressed, thereby achieving a high quality reproducing signal without changing the laser power required for reproduction very much.
    • 磁光记录介质包括读出层,其在室温下具有面内磁化,并且其温度升高时从面内磁化转变为垂直磁化,并且在其上记录信息的记录层。 读出层的组成在垂直于其表面的方向上变化,在读出层中,光入射侧的Co密度高于读出层与记录层之间的界面上的Co密度。 因此,读出层的再现光入射侧的居里温度高,再现时的极性克尔旋转角度增加,从而实现再现信号质量的改善。 另一方面,由于界面的居里温度低,所以可以抑制通过层之间的磁相互作用从平面到垂直发生的阈值温度的偏移,从而实现高质量再现信号 而不需要更改再生所需的激光功率。
    • 10. 发明授权
    • Magneto-optical disk
    • 磁光盘
    • US5486395A
    • 1996-01-23
    • US984350
    • 1992-12-02
    • Yoshiteru MurakamiNaoyasu IketaniAkira TakahashiKenji Ohta
    • Yoshiteru MurakamiNaoyasu IketaniAkira TakahashiKenji Ohta
    • G11B11/10G11B11/105B32B3/02G11B5/66
    • G11B11/10504G11B11/10515G11B11/10582G11B11/10586Y10S428/90
    • A magneto optical disk comprising: a circular substrate; a recording layer, formed on the substrate, for magneto-optical recording of information; a readout layer, formed between the substrate and the recording layer, for the reproduction of information recorded on the recording layer, wherein the readout layer has a Curie temperature which is higher than the Curie temperature of the recording layer, and exhibits in-plane magnetization at room temperature and a change from in-plane magnetization to perpendicular magnetization when its temperature rises over a certain temperature as a result of the application of a light beam, and wherein the magnetic compensation temperature is set such that it increases from the peripheral edge of the magneto-optical disk toward the center thereof. When the magneto-optical disk is used with a magneto-optical recording and reproducing device using a CAV system, it achieves high-density recording and the reproduction of signals with reduced noise, without causing the light beam control system to be complicated.
    • 一种磁光盘,包括:圆形衬底; 记录层,形成在基板上,用于磁光记录信息; 形成在基板和记录层之间的用于再现记录在记录层上的信息的读出层,其中读出层的居里温度高于记录层的居里温度,并且表现出面内磁化 在室温下由于施加光束而在其温度上升超过一定温度时从面内磁化变化到垂直磁化的变化,并且其中磁补偿温度被设定为使得其从外周边缘 磁光盘朝向其中心。 当磁光盘与使用CAV系统的磁光记录和再现装置一起使用时,可以实现高密度记录和降低噪声的信号的再现,而不会使光束控制系统复杂化。