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    • 5. 发明授权
    • Optical recording element having a plurality of thin film filtering
layers and optical recording element having an electrically conductive
layer
    • 具有多个薄膜滤光层的光学记录元件和具有导电层的光学记录元件
    • US5214636A
    • 1993-05-25
    • US421757
    • 1989-10-16
    • Toshio IshikawaHiroyuki KatayamaKazuo VanTomoyuki MiyakeJunichiro NakayamaKenji OhtaHideyoshi Yamaoka
    • Toshio IshikawaHiroyuki KatayamaKazuo VanTomoyuki MiyakeJunichiro NakayamaKenji OhtaHideyoshi Yamaoka
    • G11B7/24053G11B7/253G11B7/254
    • G11B7/253G11B7/24053G11B7/254
    • An optical recording element according to the present invention comprising: (i) a transparent substrate through which light passes; (ii) a transparent low-resistance layer having a specific resistance so as to prevent the adhesion of dust to the surface of the element caused by a static charge, the layer being formed on the surface, on which a light beam is incident, of the transparent substrate; and (iii) an optical thin film composed of at least one layer, formed on the other surface of the transparent substrate so as to transmit light beams used for recording, erasing and playback, and reflect lights which have wavelengths different from the wavelength of the above light beams and are within a specified visible region of the spectrum. With this arrangement, lights within a specified visible region of the spectrum are reflected so that the element appears to be colored according to the wavelengths of the reflected lights. Also, a problem often found in a conventional optical recording element having a transparent substrate of a resin material that the surface of the element is hardened by a light beam, can be solved. Even if a static charge is generated on the surface of such an element, the conductive transparent low-resistance substrate can eliminate the static charge outward whereby a static charge is less likely to be accumulated and the surface can be kept clean in order to improve the reliability.
    • 根据本发明的光学记录元件包括:(i)光通过的透明基板; (ii)具有电阻率的透明低电阻层,以防止由静电引起的灰尘附着在元件表面上,该层形成在光束入射的表面上的层是 透明基板; 和(iii)由至少一层构成的光学薄膜,形成在透明基板的另一个表面上,以透射用于记录,擦除和重放的光束,并且反射具有与波长不同的波长的光 在光束之上,并且在光谱的指定可视区域内。 通过这种布置,光谱的指定可视区域内的光被反射,使得该元件看起来根据反射光的波长着色。 而且,通过在具有树脂材料的透明基板的光学记录元件中经常发现的问题在于,元件的表面被光束硬化。 即使在这种元件的表面上产生静电荷,导电透明低电阻基板也可以向外消除静电荷,由此静电荷不易累积,并且表面可以保持清洁以改善 可靠性。
    • 6. 发明授权
    • Method for recording and reproducing information using an optical memory
    • 使用光学存储器记录和再现信息的方法
    • US5438561A
    • 1995-08-01
    • US329690
    • 1994-10-26
    • Kazuo VanKenji OhtaToshio Ishikawa
    • Kazuo VanKenji OhtaToshio Ishikawa
    • G03C1/73G03C1/76G03C5/56G11B7/00G11B7/0045G11B7/005G11B7/0055G11B7/24G11B7/244G11B7/30
    • G11B7/258G11B7/00455G11B7/0052G11B7/00552G11B7/244G11B7/245G11B7/2531G11B7/2533G11B7/2534G11B7/2585G11B7/2595
    • A method for recording and reproducing information using an optical memory device being constituted by a transparent substrate, a recording film formed on the substrate and made of a resin containing a photochromic material dispersed therein, the photochromic material being capable of reversibly changing its state from achromatic to chromatic and absorbing light of at least 780 nm wavelength in the chromatic state, and a reflecting film formed on the recording film for reflecting light, the method including the steps of: applying a visible light beam of a long wavelength onto the optical memory device to turn said recording film into the achromatic state for initialization, applying thereafter a visible light beam of a short wavelength onto the optical memory device to turn the recording film into the chromatic state in accordance with binary-coded data of information for recording the information, and applying another visible light beam of a long wavelength having a light intensity lower than that of the visible light beam for initialization onto the optical memory device for reproducing the information having been recorded therein.
    • 一种使用由透明基板构成的光学存储装置来记录和再现信息的方法,形成在基板上并由含有分散在其中的光致变色材料的树脂制成的记录膜,该光致变色材料能够可逆地改变其状态从消色差 在彩色状态下对至少780nm波长的光进行彩色和吸收,以及形成在用于反射光的记录膜上的反射膜,该方法包括以下步骤:将长波长的可见光束施加到光学存储器件 将所述记录膜转换为消色差状态进行初始化,然后将短波长的可见光束施加到光存储器件上,以根据用于记录信息的信息的二进制编码数据将记录膜转换成彩色状态, 并施加具有光强度lo的长波长的另一可见光束 比用于初始化到光学存储器装置上的可见光束的光束重现其中已经记录的信息。
    • 10. 发明授权
    • Method and apparatus for reproducing data from a magneto-optical
recording medium having a readout layer, transfer layer and recording
layer
    • 用于从具有读出层,转印层和记录层的磁光记录介质再现数据的方法和装置
    • US5962126A
    • 1999-10-05
    • US975517
    • 1997-11-20
    • Michinobu MiedaHiroyuki KatayamaAkira TakahashiKenji Ohta
    • Michinobu MiedaHiroyuki KatayamaAkira TakahashiKenji Ohta
    • G11B11/10G11B11/105G11B5/66
    • G11B11/10515G11B11/10586Y10S428/90Y10T428/26
    • The invention features an apparatus and method for reproducing recorded bits from a magneto-optical recording medium. The medium includes a base, a readout layer formed on the base, a transfer layer formed on the readout layer and a recording layer formed on the transfer layer. The readout and recording layers each exhibit perpendicular magnetization in a temperature range between room temperature and, respectively, the readout layer's Curie temperature and the recording layer's Curie temperature. The transfer layer is predominant in-plane magnetization at room temperature and an in-plane to perpendicular magnetization transition occurs at a temperature above room temperature. Also, the recording layer Curie temperature is lower than the Curie temperature of the transfer layer. The reproducing method includes the steps of projecting a light beam, applying a subsidiary magnetic field and reproducing information based on reflected light from the readout layer while applying the subsidiary magnetic field. The light beam is projected onto the readout layer from the side of the base so the in-plane to perpendicular magnetization transition occurs in a portion of the transfer layer, the portion corresponding to a central portion of the light beam spot. The intensity of the subsidiary magnetic field is higher than the coercive force of the readout layer and less than the exchange coupling force exerted from the recording-layer and the transfer layer to the readout layer.
    • 本发明的特征在于一种用于从磁光记录介质再现记录位的装置和方法。 介质包括基底,形成在基底上的读出层,形成在读出层上的转印层和形成在转印层上的记录层。 读出和记录层各自在室温和读出层的居里温度和记录层的居里温度之间的温度范围内呈现垂直磁化强度。 转移层在室温下是主要的面内磁化,并且在高于室温的温度下发生面内到垂直磁化转变。 此外,记录层居里温度低于转印层的居里温度。 再现方法包括以下步骤:投射光束,施加辅助磁场,并且在施加辅助磁场的同时基于来自读出层的反射光再现信息。 光束从基底侧投射到读出层上,因此在转移层的一部分中发生垂直磁化转变,该部分对应于光束点的中心部分。 辅助磁场的强度高于读出层的矫顽力,并且小于从记录层和转印层施加到读出层的交换耦合力。