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    • 2. 发明授权
    • Optical reproducing and recording method, recording medium, and optical device
    • 光学再现和记录方法,记录介质和光学装置
    • US06661745B1
    • 2003-12-09
    • US09537235
    • 2000-03-28
    • Junji TominagaNobufumi AtodaHiroshi FujiHiroyuki KatayamaKenji Ohta
    • Junji TominagaNobufumi AtodaHiroshi FujiHiroyuki KatayamaKenji Ohta
    • G11B700
    • B82Y10/00G11B7/1387G11B7/24065G11B11/10584G11B11/10586
    • An optical device and a recording medium are provided with a recording layer for recording information by radiation of light, and a mask layer which is formed closely to the recording layer, reduces its transmittance of light due to light or heat, and transmits light to the recording layer by using a near-field effect. An optical reproducing and recording method includes the steps of: emitting a laser beam onto the mask layer, generating a near field around an area of the mask layer that has transmittance being reduced by the laser beam, and reproducing or recording optical information in the recording layer by interaction between the near field and the recording layer. With this method, it is possible to provide the optical device, recording medium, and optical reproducing and recording method that can realize a high S/N ratio upon reproducing and recording and that can readily form a recording mark.
    • 光学器件和记录介质设置有用于通过照射光来记录信息的记录层和与记录层紧密相邻形成的掩模层,减少其由于光或热导致的光的透射率,并将光透射到 记录层通过使用近场效应。 光学再现和记录方法包括以下步骤:将激光束发射到掩模层上,产生围绕掩模层的区域的近场,该区域具有通过激光束减少的透射率,以及在记录中再现或记录光学信息 通过近场和记录层之间的相互作用来形成层。 利用这种方法,可以提供在再现和记录时可以实现高S / N比并且可以容易地形成记录标记的光学设备,记录介质和光学再现和记录方法。
    • 4. 发明申请
    • Optical recording/reproducing method and optical recording medium
    • 光记录/再现方法和光记录介质
    • US20060250916A1
    • 2006-11-09
    • US10519169
    • 2003-06-24
    • Takashi KikukawaJunji TominagaTakayuki ShimaAkihiro TachibanaHiroshi FujiJooho Kim
    • Takashi KikukawaJunji TominagaTakayuki ShimaAkihiro TachibanaHiroshi FujiJooho Kim
    • G11B7/0045
    • G11B7/2433G11B7/00452G11B7/242G11B7/257G11B2007/2432
    • A recording mark train is formed in an optical recording medium including a noble metal oxide layer by decomposing a noble metal oxide and deforming the noble metal oxide layer. Noble metal particles are irreversibly deposit in the noble metal oxide layer formed with the recording mark train and a laser beam for reproducing data is irradiated onto the thus deposited noble metal particles, thereby reading the recording mark train. The recording mark train includes at least one recording mark having a length shorter than 0.37λ/NA wherein λ is the wavelength of the laser beam and NA is an optical system for irradiating the laser beam. According to the present invention, in the case of recording and reproducing a recording mark having a size smaller than the resolution limit or a recording mark having a size equal to or larger than the resolution limit but close to the resolution limit in this manner, a high reproduction output can be obtained and a high reproduction durability can be achieved for each of the all recording marks in the recording mark train.
    • 通过分解贵金属氧化物并使贵金属氧化物层变形,在包括贵金属氧化物层的光学记录介质中形成记录标记列。 贵金属颗粒不可逆地沉积在由记录标记列形成的贵金属氧化物层中,并且用于再现数据的激光束照射到如此沉积的贵金属颗粒上,从而读取记录标记列。 记录标记列包括长度短于0.37λ/ NA的至少一个记录标记,其中λ是激光束的波长,NA是用于照射激光束的光学系统。 根据本发明,在记录和再现具有小于分辨率极限的尺寸的记录标记或具有等于或大于分辨率限制但接近分辨率极限的记录标记的情况下, 可以获得高再现输出,并且可以对记录标记列中的所有记录标记中的每一个实现高再现耐久性。
    • 8. 发明授权
    • Optical recording medium
    • 光记录介质
    • US06319582B1
    • 2001-11-20
    • US09506322
    • 2000-02-18
    • Junji TominagaNobufumi Atoda
    • Junji TominagaNobufumi Atoda
    • B32B302
    • G11B7/257B82Y10/00G11B7/005G11B7/24G11B7/243G11B2007/24306G11B2007/24308G11B2007/2431G11B2007/24312G11B2007/24314G11B2007/24316Y10S428/913Y10S430/146Y10T428/21
    • Disclosed is an optical recording layer in which the microaperture for reproducing optical near-field light is controllable so as to read out the optical near-field signals with stability by keeping the signal-reproducing head at a height safe from crashing with the recording medium even when the recording marks are smaller than 100 nm. The optical recording medium is a layered body comprising: (a) a transparent substrate; (b) a first protective layer formed on the substrate; (c) an optically or thermally active layer, which is capable of reversibly generating a micro-aperture by application of light or heat, formed on the first protective layer; (d) a second protective layer, which is under a compressive stress of 200 MPa to 1 GPa, formed on the active layer; (e) an optical recording layer formed on the second protective layer; and (f) a third protective layer formed on the optical recording layer.
    • 公开了一种光学记录层,其中用于再现光学近场光的微孔可以被控制,以便通过将信号重放头保持在高度上而不会与记录介质碰撞,从而稳定地读出光学近场信号 当记录标记小于100nm时。 光记录介质是层叠体,其包括:(a)透明基板; (b)形成在所述基板上的第一保护层; (c)光学或热活性层,其能够通过施加光或热而可逆地产生形成在第一保护层上的微孔; (d)形成在活性层上的处于200MPa〜1GPa的压缩应力的第二保护层; (e)形成在第二保护层上的光学记录层; 和(f)形成在光学记录层上的第三保护层。