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    • 7. 发明授权
    • Manufacturing method for optical information recording medium and optical information recording medium
    • 光信息记录介质和光信息记录介质的制造方法
    • US08211522B2
    • 2012-07-03
    • US12598816
    • 2009-03-05
    • Kazuya HisadaYuuko Tomekawa
    • Kazuya HisadaYuuko Tomekawa
    • B32B3/02
    • G11B7/263G11B7/24038Y10T428/21
    • Optical recording medium manufacturing includes: providing a first resin on a first recording layer; forming a first intermediate layer by performing first UV irradiation at a first dose to cure the first resin; providing a second recording layer on the first intermediate layer; providing a second resin on the second recording layer; forming a second intermediate layer by performing second UV irradiation at a second dose to cure the second resin; providing a third recording layer on the second intermediate layer; providing a third resin on the third recording layer; and forming a light transmitting layer by performing third UV irradiation at a third dose to cure the third resin. The first and second resins have substantially the same relationships between UV dose received and linear expansion coefficient. The first through third doses are such that UV doses received by the intermediate layers are substantially the same.
    • 光记录介质制造包括:在第一记录层上提供第一树脂; 通过以第一剂量进行第一UV照射来固化第一树脂来形成第一中间层; 在第一中间层上提供第二记录层; 在第二记录层上提供第二树脂; 通过以第二剂量进行第二UV照射来固化第二树脂来形成第二中间层; 在第二中间层上提供第三记录层; 在第三记录层上提供第三树脂; 以及通过以第三剂量进行第三UV照射来形成透光层,以使第三树脂固化。 第一和第二树脂具有基本上相同的UV剂量和线膨胀系数之间的关系。 第一至第三剂量使得由中间层接收的紫外线剂量基本上相同。
    • 8. 发明授权
    • Confocal optical device and spherical-aberration correction method
    • 共焦光学装置和球面像差校正方法
    • US07477407B2
    • 2009-01-13
    • US11268663
    • 2005-11-08
    • Tatsuo ItohTeruhiro ShionoKazuya Hisada
    • Tatsuo ItohTeruhiro ShionoKazuya Hisada
    • G01B11/28
    • G01B11/0616G01B9/04G02B21/0072
    • A confocal optical device and a spherical-aberration correction method reduce the generation of spherical aberration. This confocal optical device includes a drive mechanism which moves a sample board to change the distance between an objective lens and the sample board. A spherical-aberration correction element is disposed between a light source and the objective lens. A reference-position detection section, based on a detection result by a photo-detector, detects the position of the sample board when the focal position of the objective lens coincides with the surface of the sample. A movement-distance derivation section, based on a detection result by the photo-detector, calculates a distance by which the sample board is moved until the focal position of the objective lens coincides with an object to be measured inside of the sample, and derives the depth at which the measured object is located in the sample. A correction control section controls the spherical-aberration correction element according to the inside-sample depth of the measured object.
    • 共焦光学装置和球面像差校正方法减少了球面像差的产生。 该共焦光学装置包括驱动机构,该驱动机构移动样品板以改变物镜与样品板之间的距离。 在光源和物镜之间设置球面像差校正元件。 当基准位置检测部分基于光检测器的检测结果,当物镜的焦点位置与样品的表面一致时,检测样品板的位置。 基于光检测器的检测结果的运动距离导出部分计算样品板移动到物镜的焦点位置与样品内部待测物体重合的距离,并导出 测量对象位于样品中的深度。 校正控制部根据测量对象的内部样本深度控制球面像差校正元件。
    • 10. 发明申请
    • Optical recording medium and production method thereof
    • 光记录介质及其制备方法
    • US20050259562A1
    • 2005-11-24
    • US10381152
    • 2002-06-12
    • Morio TomiyamaKazuya HisadaEiichi Ito
    • Morio TomiyamaKazuya HisadaEiichi Ito
    • B29D17/00G11B7/26B29D11/00G02B1/12G11B3/70G11B5/84
    • B29D17/005G11B7/263
    • A method for producing an optical recording medium of the present invention includes: a first step of laminating a substrate and a transfer stamper with a not cured ultraviolet-curable resin interposed therebetween, the transfer stamper having, on at least one of surfaces thereof, recesses/projections that provide information to be transferred; a second step of transferring the information to be transferred of the transfer stamper onto a surface of the ultraviolet-curable resin; a third step of detaching the transfer stamper from the ultraviolet-curable resin at an interface therebetween after the ultraviolet-curable resin is cured; and a fourth step of forming a thin film layer on the information-transferred surface of the ultraviolet-curable resin, the thin film layer including at least one of a recording film and a reflection film. In this method, at least one of a weight of the transfer stamper and a viscosity of the ultraviolet-curable resin is set so that a surface roughness of the information-transferred surface of the ultraviolet-curable resin is smaller than a surface roughness of the surface of the transfer stamper on which the information to be transferred is provided.
    • 本发明的光记录介质的制造方法包括:第一工序,在基板和转印用压模之间夹置未固化的紫外线固化树脂的层叠方法,所述转印模具的至少一个面上具有凹部 /提供转让信息的预测; 第二步,将转印模具的转印信息转印到紫外线固化树脂的表面上; 在紫外线固化树脂固化之后,在其间界面处从紫外线固化树脂上分离转印模具的第三步骤; 以及在所述紫外线固化树脂的信息传递表面上形成薄膜层的第四步骤,所述薄膜层包括记录膜和反射膜中的至少一种。 在该方法中,将转印模的重量和紫外线固化型树脂的粘度中的至少一种设定为使紫外线固化型树脂的信息转印面的表面粗糙度小于 提供要传送的信息的传送压模的表面。