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    • 4. 发明专利
    • Wavelength conversion device and method
    • 波长转换器件及方法
    • JP2008250170A
    • 2008-10-16
    • JP2007093920
    • 2007-03-30
    • Dainichiseika Color & Chem Mfg Co LtdNational Institute Of Advanced Industrial & Technology大日精化工業株式会社独立行政法人産業技術総合研究所
    • HIRAGA TAKASHITANIGAKI NOBUTAKAUENO ICHIROYAMAMOTO NORITAKAMIZOKURO TOSHIKOTANAKA NORIO
    • G02F2/02G02F1/31
    • PROBLEM TO BE SOLVED: To provide a wavelength conversion technology by which the number of optical components can be reduced and cost reduction can be attained without using an electric circuit and a mechanical movable part, influence of electromagnetic wave interference is not received, a cause of electromagnetic wave interference is not produced and utilization of light having a wide wavelength selection range is made possible and which has high durability and whose real practical use is expected.
      SOLUTION: The wavelength conversion device includes a signal light inputting part 12 in which pulse-shaped signal light 14 having a specified wavelength is made incident, a light source 13 for light for conversion radiating light 15 for conversion having a wavelength different from that of the signal light 14, a heat lens forming means 11 having a light absorption layer having a wavelength band showing absorption properties to the signal light 14 and transmission properties to the light 15 for conversion and showing a heat lens effect and a conversion light selection part emitting only light for conversion to be deflection light whose going path is changed of emitted light for conversion as conversion light. In the light absorption layer of the heat lens forming means 11, the signal light 14 and light 15 for conversion are condensed so that condensing points are made different in a direction perpendicular to an optical axis.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种波长转换技术,通过该技术可以在不使用电路和机械可移动部分的情况下降低光学部件的数量并且可以实现成本降低,所以不接收电磁波干扰的影响, 不会产生电磁波干扰的原因,并且使得具有宽波长选择范围的光的使用成为可能,并且其具有高耐久性并且其预期的实际实际应用。 解决方案:波长转换装置包括信号光输入部分12,其中入射具有特定波长的脉冲信号光14,用于转换的光的光源13用于具有不同于 信号光14的热透镜形成装置11具有具有表示对信号光14的吸收特性的波长带的光吸收层和对转换用的光15的透射特性,并且显示出热透镜效果和转换光选择 部分仅发射用于转换的光以作为转换光的发射光的转变路径作为转换光的偏转光。 在热透镜形成装置11的光吸收层中,用于转换的信号光14和光15被冷凝,使得聚光点在与光轴垂直的方向上不同。 版权所有(C)2009,JPO&INPIT
    • 8. 发明专利
    • Optical recording medium, its manufacturing method and optical recording method
    • 光学记录介质,其制造方法和光学记录方法
    • JP2004103044A
    • 2004-04-02
    • JP2002259038
    • 2002-09-04
    • Dainichiseika Color & Chem Mfg Co LtdNational Institute Of Advanced Industrial & Technology大日精化工業株式会社独立行政法人産業技術総合研究所
    • MIZOKURO TOSHIKOHIRAGA TAKASHIYAMAMOTO NORITAKAMOCHIZUKI HIROTAKAHORIUCHI SHINTANAKA NORIO
    • G11B7/244G11B7/004G11B7/24G11B7/245G11B7/26
    • G11B7/245G11B7/266Y10S430/146
    • PROBLEM TO BE SOLVED: To provide an optical recording medium in which polymer alloy in which a phase separation domain phase of an object to be covered is formed, is reformed by volatile material that causes interaction with the alloy so as to have uniform film thickness and composition, to provide a manufacturing method of the medium, and to provide an optical recording method through which high density recording is made by light beams having wavelengths of a wide range.
      SOLUTION: Volatile material steam causing interaction with the polymer alloy in which the phase separation domain phase of the object to be covered is formed, is put on the surface of the phase separation domain phase and the adhered material is penetrated and spread into a surface layer inner section from the phase separation domain phase surface. The optical recording medium is manufactured by the process of interaction between the phase separation domain surface and the volatile material. Then, optical recording is conducted for the medium by using a change in light transmissivity, reflectivity, refractive index or surface potential of the medium induced by external irradiation of ultraviolet rays, visible rays or infrared ray.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种光学记录介质,其中形成被覆物体的相分离相的聚合物合金由与合金相互作用的挥发性物质重整,从而具有均匀的 膜厚度和组成,以提供介质的制造方法,并且提供通过其具有宽范围波长的光束进行高密度记录的光学记录方法。 解决方案:与形成待覆盖物体的相分离相的聚合物合金相互作用的挥发性物质蒸汽被放在相分离相的表面上,并将粘附的物质渗入并扩散 来自相分离相的相表面的表层内部。 光记录介质是通过相分离区域表面和挥发性物质之间的相互作用过程来制造的。 然后,通过使用由紫外线照射,可见光线或红外线引起的介质的透光率,反射率,折射率或表面电位的变化,对介质进行光学记录。 版权所有(C)2004,JPO