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    • 3. 发明授权
    • Magneto-optical disk and process for manufacturing the same
    • 磁光盘及其制造方法
    • US5179546A
    • 1993-01-12
    • US631984
    • 1990-12-21
    • Yumiko AnzaiYoshinori MiyamuraToshio NiiharaHarukazu MiyamotoNorio Ohta
    • Yumiko AnzaiYoshinori MiyamuraToshio NiiharaHarukazu MiyamotoNorio Ohta
    • G11B11/10G11B7/26G11B11/105
    • G11B11/10584G11B11/10582G11B7/26
    • A magneto-optical disk which has a circular disk form and comprises a substrate provided with information pits and a guide groove, a recording medium layer provided on the substrate, and a protective layer formed of at least one thin film on the medium layer, in which the surface of the protective layer is minutely roughened to have a concave rough pattern and not to substantially protrude beyond a reference level composed of the outermost surface portions of the protective layer. When the magneto-optical disk is subjected to recording by a CSS system using an air floating magnetic head conforming to high-frequency recording in a magnetic field modulation type recording, which is one of methods of overwrite recording on magneto-optical disks, the minute concave rough pattern formed on the surface of the disk substrate prevents such troubles as adhesion of the magnetic head to the surface of the disk and collision between the disk substrate being rotated and the head.
    • 一种具有圆盘形状并包括设置有信息凹坑的衬底和引导槽的磁光盘,设置在衬底上的记录介质层和由介质层上的至少一层薄膜形成的保护层, 其保护层的表面被微小地粗糙化以具有凹形粗糙图案,并且基本上不突出超过由保护层的最外表面部分组成的基准水平。 当磁光盘通过使用在磁光调制型记录中的符合高频记录的空气浮动磁头的CSS系统进行记录时,其是在磁光盘上重写记录的方法之一,分钟 形成在盘基板表面上的凹形粗糙图案防止了磁头粘附到盘表面和盘基片旋转与头部之间的碰撞等问题。
    • 6. 发明授权
    • Magneto-optical disk
    • 磁光盘
    • US5654058A
    • 1997-08-05
    • US310006
    • 1994-09-21
    • Fumiyoshi KirinoHarukazu MiyamotoShigenori OkamineNoriyuki OgiharaMasahiko TakahashiNorio OhtaToshio Niihara
    • Fumiyoshi KirinoHarukazu MiyamotoShigenori OkamineNoriyuki OgiharaMasahiko TakahashiNorio OhtaToshio Niihara
    • G11B11/105G11B5/66
    • G11B11/1053G11B11/10586G11B11/10589G11B11/10591G11B11/10593G11B11/10508G11B11/10519Y10S428/90
    • In a magneto-optical disk for recording, reproduction or erasing with a laser beam, which comprises a film of four-layer structure consisting of a first dielectric layer, a magneto-optical recording layer, a second dielectric layer and a metallic layer, laid on a disk substrate provided with guide tracks, temperature distribution of the magneto-optical recording layer is controlled by controlling the thermal diffusivity of the metallic layer, and recording/reproduction/erasing repetition characteristics are improved thereby. In the disk of the present structure, the temperature is elevated in a broader area from the center of laser beam, and thus a thoroughly broad erasing domain width taking a track offset into account can be obtained and no recording domains remain after the erasing. The reproduced signal output is increased by 4 dB, as compared with that obtained by a disk of three-layer structure without any metallic layer, because the beam utilization efficiency is increased owing to both Kerr effect and Faraday effect. When the disk of the present structure is subjected to field modulation recording, tails of arrow-feather-shaped recording domains peculiar to the field modulation recording can be shortened and interbit interferences can be overcome, resulting in an increase in C/N (S/N) ratio and the high density recording can be made.
    • 在用于用激光束记录,再现或擦除的磁光盘中,其包括由第一介电层,磁光记录层,第二电介质层和金属层组成的四层结构的膜,铺设 在设置有导轨的盘基板上,通过控制金属层的热扩散率来控制磁光记录层的温度分布,从而提高记录/再现/擦除重复特性。 在本结构的盘中,从激光束的中心向较高的区域升温,从而可以获得考虑到磁道偏移的完全宽的擦除域宽度,并且在擦除之后不会留下记录域。 与没有任何金属层的三层结构的盘相比,再现信号输出增加了4dB,因为由于克尔效应和法拉第效应都增加了光束利用效率。 当本结构的磁盘进行现场调制记录时,可以缩短磁场调制记录特有的箭头 - 羽状记录区的尾部,并克服间断干扰,导致C / N(S / N)比,并且可以进行高密度记录。
    • 7. 发明授权
    • Magneto-optical recording medium
    • 磁光记录介质
    • US4923765A
    • 1990-05-08
    • US294941
    • 1989-01-06
    • Shinji TakayamaToshio NiiharaKatsuhiro KanekoYutaka Sugita
    • Shinji TakayamaToshio NiiharaKatsuhiro KanekoYutaka Sugita
    • G03G5/16G11B11/105
    • G11B11/10586G03G5/16G11B11/10591Y10S428/90Y10T428/12951
    • A magneto-optical recording medium made of a rare-earth-transition metal amorphous film provides a compensation temperature Tcomp of 50.degree.-200.degree. C. or 0.degree. C. or less. This compensation temperature decreases a saturation magnetization Ms during recording, thereby preventing the provision of inverted magnetic domains at the centers of recording domains resulting from the demagnetizing field generated by the strength distribution of laser light, and so improving a carrier-to-noise ratio during reading. In the case of using a Tb-Fe-Co system amorphous film, Tcomp of 50.degree.-200.degree. C. may be give by the composition comprising Tb of 24-30 atomic %, Co of 7-20 atomic % and Fe of the rest, and Tcomp of 0.degree. C. or less may be given by the composition comprising Tb of 18-21.5 atomic %, Co of 8-10 atomic % and Fe of the rest.
    • 由稀土 - 过渡金属非晶膜制成的磁光记录介质的补偿温度Tcomp为50〜200℃或0℃以下。 该补偿温度在记录期间降低饱和磁化强度Ms,从而防止在由激光的强度分布产生的消磁场产生的记录域的中心处提供反向磁畴,并且因此提高了载波噪声比 读。 在使用Tb-Fe-Co系非晶膜的情况下,可以通过包含Tb为24〜30原子%,Co为7〜20原子%的Tb的组成和50〜200℃的Fe 可以由包含18-21.5原子%的Tb,8-10原子%的Co和其余的Fe的组合物给出0℃或更低的Tcomp。