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    • 33. 发明公开
    • Magneto-optical memory medium and reproducing method thereof
    • Magneto-optisches Speichermedium unddazugehörigesWiedergabeverfahren
    • EP0863504A2
    • 1998-09-09
    • EP98104044.7
    • 1998-03-06
    • Sharp Kabushiki Kaisha
    • Takahashi, AkiraMieda, MichinobuIketani, NaoyasuMori, GoNakajima, JunsakuMurakami, YoshiteruHirokane, Junji
    • G11B11/10
    • 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,居里温度在上述规定温度。 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掩蔽,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 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。
    • 37. 发明公开
    • Magneto-optical recording medium and manufacturing method thereof
    • Magnetooptisches Aufzeichnungsmedium und Verfahren zu seiner Herstellung。
    • EP0657880A3
    • 1995-09-20
    • EP94309031.6
    • 1994-12-05
    • SHARP KABUSHIKI KAISHA
    • Murakami, YoshiteruTakahashi, AkiraIketani, NaoyasuOhta, Kenji
    • G11B11/10
    • 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,并且在读出层中,光入射侧的Co密度高于读出层和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,因此能够抑制由层间的磁性相互作用而发生从平面到垂直的阈值温度的偏移,从而实现高品质的再现信号 而不需要更改再生所需的激光功率。
    • 39. 发明公开
    • Magneto-optical recording medium
    • 磁选Aufzeichnungsmedium。
    • EP0604065A2
    • 1994-06-29
    • EP93309882.4
    • 1993-12-08
    • SHARP KABUSHIKI KAISHA
    • Hirokane, JunjiKatayama, HiroyukiOhta, KenjiMurakami, YoshiteruTakahashi, Akira
    • G11B11/10
    • G11B11/10586Y10S428/90
    • A magneto-optical recording medium has an exchange-coupled triple layer film wherein a readout layer which 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 above T₁, an intermediate layer which has perpendicular magnetization at room temperature, the perpendicular magnetization being maintained from room temperature to Curie temperature T₃, and a recording layer which has perpendicular magnetization at room temperature, the perpendicular magnetization been maintained from room temperature to Curie temperature T₂ which are laminated in this order, and the temperatures T₁, T₂ and T₃ satisfy the following inequality: T₁
    • 磁光记录介质具有交换耦合三层膜,其中在室温下具有面内磁化的读出层,当其温度升高到T1以上时,从平面内磁化转变为垂直磁化的读出层, 在室温下具有垂直磁化的中间层,垂直磁化维持在室温至居里温度T3,以及在室温下具有垂直磁化的记录层,垂直磁化维持在室温至居里温度T2之间,层压 按照该顺序,温度T1,T2和T3满足以下不等式:T1