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    • 7. 发明授权
    • Magneto-optical recording medium and manufacturing method thereof
    • 磁光记录介质及其制造方法
    • US5968678A
    • 1999-10-19
    • US689149
    • 1996-07-30
    • Kenji TanaseAtsushi YamaguchiYoshihisa SuzukiSatoshi SumiYoshiharu UchiharaSeiji MurataKenji Torasawa
    • Kenji TanaseAtsushi YamaguchiYoshihisa SuzukiSatoshi SumiYoshiharu UchiharaSeiji MurataKenji Torasawa
    • G11B11/105G11B5/66
    • G11B11/1051G11B11/10506G11B11/10515G11B11/10586G11B11/10595Y10S428/90
    • In magneto-optical recording medium, on a transparent substrate of polycarbonate resin, an SiN film having the thickness of 600 to 800 .ANG. and surface roughness Rmax of at most 10 nm is formed. On the SiN film, a GdFeCo reading layer having the thickness of 800 to 1200 .ANG. with Gd content of 30 to 36 at. % and Co content of 12 to 50 at. % is formed. On the reading layer, a TbFeCo recording layer of which Co content is 10 to 16 at. % is formed. The recording layer is a perpendicular magnetization film, and the reading layer is an in-plane magnetization film. At the time of reading, the reading and recording layers are heated, and the direction of magnetization of the recording layer is transferred to the reading layer only in the prescribed heated area. Information can be read only from the transferred portion, and thus a super resolution effect is obtained. When Kerr rotation angle .theta..sub.K is measured for the light reflected from the reading layer while the temperatures of the reading and recording layers are elevated, .theta..sub.K is approximately in proportion to Cth power of the elevated temperature t, wherein C is at least 8.0.
    • 在磁光记录介质中,在聚碳酸酯树脂的透明基板上形成厚度为600〜800的SiN膜,表面粗糙度Rmax为10nm以下。 在SiN膜上,具有800〜1200厚度的GdFeCo读取层,Gd含量为30〜36at。 %,Co含量为12〜50。 % 形成了。 在读取层上,Co含量为10〜16at的TbFeCo记录层。 % 形成了。 记录层是垂直磁化膜,读取层是面内磁化膜。 在读取时,读取和记录层被加热,并且仅在规定的加热区域中记录层的磁化方向被转移到读取层。 信息只能从传送部分读取,从而获得超分辨率效果。 当读取层和记录层的温度升高时,对于从读取层反射的光测量克尔旋转角θK时,θK与升高温度t的Cth功率大致成比例,其中C至少为8.0。
    • 8. 发明授权
    • Information recording/reproducing apparatus
    • 信息记录/重放装置
    • US06538968B1
    • 2003-03-25
    • US09284080
    • 1999-04-07
    • Atsushi YamaguchiKenji TorazawaSatoshi SumiKenji TanaseYoshihisa Suzuki
    • Atsushi YamaguchiKenji TorazawaSatoshi SumiKenji TanaseYoshihisa Suzuki
    • G11B708
    • G11B7/126G11B7/0045G11B7/125G11B7/1365G11B11/10595
    • The present invention provides a recording medium and an information recording/reproducing apparatus which permit recording and/or reproducing by a laser beam of optimized power for each recording medium. The recording medium is provided with a calibration region in addition to an information recording region. The calibration region has wobbles formed such that the amplitude of the waveform of a reproduced signal therefrom can change. Prior to recording to the information recording region, a signal is recorded in the calibration region by changing the laser power, and the recorded signal is immediately reproduced. The waveform of the reproduced signal is evaluated to determine optimum laser power for recording. At the time of reproducing, a signal previously recorded in the calibration region is reproduced while changing the laser power, and laser power optimum for reproducing is determined.
    • 本发明提供一种记录介质和信息记录/再现装置,其允许通过每个记录介质的优化功率的激光束进行记录和/或再现。 记录介质除了信息记录区域之外还设置有校准区域。 校准区域具有形成的摆动,使得其再现信号的波形的幅度可以改变。 在记录到信息记录区之前,通过改变激光功率将信号记录在校准区域中,并立即再现所记录的信号。 评估再现信号的波形以确定用于记录的最佳激光功率。 在再现时,在改变激光功率的同时再现先前记录在校准区域中的信号,并且确定用于再现的最佳激光功率。
    • 9. 发明授权
    • Magneto-optical recording and reproducing apparatus and method
    • 磁光记录和再现装置及方法
    • US06205092B1
    • 2001-03-20
    • US08976010
    • 1997-11-21
    • Atsushi YamaguchiSatoshi SumiYoshihisa SuzukiKenji Tanase
    • Atsushi YamaguchiSatoshi SumiYoshihisa SuzukiKenji Tanase
    • G11B1100
    • B82Y10/00G11B7/123G11B7/127G11B7/1356G11B7/1384G11B7/1387G11B11/10515G11B11/10543G11B11/10554
    • A magneto-optic recording medium reproduction device includes a multi-clad, step index optical fiber, a semiconductor laser arranged on one end surface side of the optical fiber for providing laser beam to one end surface of the optical fiber, a photodetector arranged on one end surface side of the optical fiber and receiving laser beam from one end surface of the optical fiber, and a magnetic head for applying an alternating field to the magneto-optic recording medium. Since the other end surface of the optical fiber is arranged adjacent to the magneto-optic recording medium, an accurate signal can be reproduced even from an extremely small recorded domain. Furthermore, since an alternating field is applied to the magneto-optic recording medium, a domain transferred from a recording layer of the magneto-optic recording medium to a reproducing layer is expanded and a large reproduced signal can be obtained from the expanded domain.
    • 一种磁光记录介质再现装置,包括:多包层步进折射率光纤,配置在光纤的一个端面侧的半导体激光器,用于向光纤的一个端面提供激光束;光检测器 并且从光纤的一个端面接收激光束,以及用于向磁光记录介质施加交变场的磁头。 由于光纤的另一个端面被布置成与磁光记录介质相邻,所以即使从非常小的记录域也可以再现准确的信号。 此外,由于将交变场应用于磁光记录介质,从磁光记录介质的记录层转移到再现层的域被扩展,并且可以从扩展域获得大的再现信号。
    • 10. 发明授权
    • Magneto-optical recording device having a controllable polarizing filter
    • 具有可控偏振滤光器的磁光记录装置
    • US5796683A
    • 1998-08-18
    • US823757
    • 1997-03-25
    • Satoshi SumiKenji TanaseYoshihisa SuzukiAtsushi YamaguchiYoichi Tsuchiya
    • Satoshi SumiKenji TanaseYoshihisa SuzukiAtsushi YamaguchiYoichi Tsuchiya
    • G11B11/10G11B7/125G11B7/135G11B11/105G11B11/00
    • G11B7/1365G11B11/10543
    • An information recording and reproduction apparatus for a magnetically induced superresolution magneto-optical recording medium includes an optical head that emits a laser beam to a signal recording plane of the medium and detecting a laser beam reflected therefrom. The optical head includes a polarization plane rotary unit and a polarizing filter between a light source and an objective lens. The polarization plane rotary unit transmits the laser beam while rotating the direction of polarization of the laser beam. The polarizing filter allows the laser beam to be transmitted at the outer portion independent of the direction of polarization, and allows only the laser beam that is polarized in a particular direction to be transmitted at the inner portion. The polarization plane rotary unit is controlled so as to rotate the direction of polarization of the laser beam in a direction different from the particular direction in reproduction. Thus, the optical superresolution method is carried out with the inner portion of the laser beam for radiation blocked only in reproduction.
    • 用于磁感应超分辨率磁光记录介质的信息记录和再现装置包括:光头,其将激光束发射到介质的信号记录平面,并检测从其反射的激光束。 光头包括偏振面旋转单元和光源与物镜之间的偏振滤光器。 偏振面旋转单元在旋转激光束的偏振方向的同时透射激光束。 偏振滤光器允许激光束在外部部分与偏振方向无关地传输,并且仅允许在特定方向上被偏振的激光束在内部传播。 控制偏振面旋转单元,以便在再现中沿与特定方向不同的方向旋转激光束的偏振方向。 因此,光学超分辨率方法是用激光束的内部部分进行的,用于仅在再现中阻挡辐射。