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    • 61. 发明授权
    • Optical low pass filter
    • 光学低通滤波器
    • US08284488B2
    • 2012-10-09
    • US13034729
    • 2011-02-25
    • Hirotoshi YabumotoKoichi Murata
    • Hirotoshi YabumotoKoichi Murata
    • G02B5/30
    • G03B11/00G02B5/3083G02B27/28G02B27/46
    • The present invention relates to a low pass filter including a wave plate capable of modulating incident light serving as image information such that A-polarized light and B-polarized light orthogonal to the A-polarized light are at an equivalent light quantity level over a visible light region, i.e., a transmittance takes a value close to 50%. According to the low pass filter of the present invention, it is possible to appropriately reduce a moiré phenomenon generated by an image sensor constituting the optical low pass filter including the above-described wave plate, and suppress degradation of an image quality caused by light quantity deflection of a separated light beam, and the low pass filter of the present invention is therefore useful.
    • 低通滤波器技术领域本发明涉及一种低通滤波器,其包括能够调制作为图像信息的入射光的波片,使得与A偏振光正交的A偏振光和B偏振光在可见光之上处于等效光量水平 光区域,即透射率接近50%。 根据本发明的低通滤波器,可以适当地减少构成包括上述波片的光学低通滤波器的图像传感器产生的波纹现象,并且抑制由光量引起的图像质量的劣化 因此,本发明的分离光束的偏转和低通滤波器是有用的。
    • 62. 发明申请
    • OPTICAL LOW PASS FILTER
    • 光学低通滤波器
    • US20110149386A1
    • 2011-06-23
    • US13034729
    • 2011-02-25
    • Hirotoshi YABUMOTOKoichi Murata
    • Hirotoshi YABUMOTOKoichi Murata
    • G02B5/30G02B27/28
    • G03B11/00G02B5/3083G02B27/28G02B27/46
    • The present invention relates to a low pass filter including a wave plate capable of modulating incident light serving as image information such that A-polarized light and B-polarized light orthogonal to the A-polarized light are at an equivalent light quantity level over a visible light region, i.e., a transmittance takes a value close to 50%. According to the low pass filter of the present invention, it is possible to appropriately reduce a moiré phenomenon generated by an image sensor constituting the optical low pass filter including the above-described wave plate, and suppress degradation of an image quality caused by light quantity deflection of a separated light beam, and the low pass filter of the present invention is therefore useful.
    • 低通滤波器技术领域本发明涉及一种低通滤波器,其包括能够调制作为图像信息的入射光的波片,使得与A偏振光正交的A偏振光和B偏振光在可见光之上处于等效光量水平 光区域,即透射率接近50%。 根据本发明的低通滤波器,可以适当地减少构成包括上述波片的光学低通滤波器的图像传感器产生的波纹现象,并且抑制由光量引起的图像质量的劣化 因此,本发明的分离光束的偏转和低通滤波器是有用的。
    • 63. 发明授权
    • Optical head apparatus
    • 光头设备
    • US07835252B2
    • 2010-11-16
    • US11734535
    • 2007-04-12
    • Koichi MurataYoshiharu Ooi
    • Koichi MurataYoshiharu Ooi
    • G11B7/135
    • G11B7/1353G02B5/1828G02F1/1313G02F1/292G11B7/1369G11B2007/0006
    • An optical head apparatus includes a light source and an objective lens focusing a light source light on an optical recording medium. Also included is a light detector receiving a return light, and a variable diffraction device including a first polarized light diffraction grating; and a second polarized light diffraction grating. Provided that a polarizing direction diffracted by the first polarized light diffraction grating is defined as a first polarizing direction and a polarizing direction that is orthogonal to the first polarizing direction and not diffracted by the first polarized light diffraction grating is defined as a second polarizing direction, a ratio obtained from dividing a diffraction efficiency in the second polarizing direction by a diffraction efficiency in the first polarizing direction, of the first polarized light diffraction grating, is 0 to 0.5, and a ratio obtained from dividing a diffraction efficiency in the first polarizing direction by a diffraction efficiency in the second polarizing direction, of the second polarized light diffraction grating, is 0 to 0.5.
    • 光学头装置包括光源和将光源光聚焦在光学记录介质上的物镜。 还包括接收返回光的光检测器和包括第一偏振光衍射光栅的可变衍射装置; 和第二偏振光衍射光栅。 如果将由第一偏振光衍射光栅衍射的偏振方向定义为第一偏振方向,并将与第一偏振光衍射光栅不衍射的与第一偏振方向正交的偏振方向定义为第二偏振方向, 从第二偏振方向的衍射效率除以第一偏振光衍射光栅的第一偏振方向的衍射效率得到的比例为0〜0.5,并且从第一偏振方向的衍射效率 通过第二偏振光衍射光栅的第二偏振方向的衍射效率为0〜0.5。
    • 67. 发明申请
    • OPTICAL COMPONENT FOR LASER BEAM
    • 激光束光学元件
    • US20090110011A1
    • 2009-04-30
    • US12343963
    • 2008-12-24
    • Yasuhisa NISHIKAWAKoichi Murata
    • Yasuhisa NISHIKAWAKoichi Murata
    • H01S3/098
    • G11B7/1275G02B5/32G11B7/1353G11B2007/0006
    • The present invention is to suppress deterioration of durability at the time when an optical component using a material optimized to be used in an optical path of a laser beam for performing reproduction/recording for a CD and a DVD is used in an optical head device using light sources including a blue semiconductor laser. A first transparent substrate 1 and a second transparent substrate 2 sandwich and hold therebetween a concave-convex portion 5 comprising a polymer liquid crystal, a filling adhesive 7 for filling the concave-convex, and a phase plate 6 having a retardation corresponding to ¼ of a wavelength used. An inorganic optical multilayer film 3 is formed on the whole surface of the first transparent substrate 1, on the side opposite to the concave-convex portion 5, and an inorganic optical multilayer film 4 is formed on the whole surface of the second transparent substrate 2, on the side opposite to the concave-convex portion 5. The formation of the optical multilayer film 4 reduces the intensity of light of 400 to 410 nm which enters the second transparent substrate 2 to 20% or less of that of light which enters the optical multilayer film.
    • 本发明是为了抑制使用使用优化用于在用于CD和DVD的再现/记录的激光束的光路中使用的材料的光学部件在使用光学头装置时使用耐久性的劣化 包括蓝色半导体激光器的光源。 第一透明基板1和第二透明基板2夹持并保持在其间,包括聚合物液晶的凹凸部5,用于填充凹凸的填充粘合剂7和相位差为相当于1/4的相位差 使用的波长。 无机光学多层膜3形成在第一透明基板1的与凹凸部5相反的一侧的整个表面上,并且在第二透明基板2的整个表面上形成无机光学多层膜4 在与凹凸部5相反的一侧上。形成光学多层膜4将进入第二透明基板2的400〜410nm的光的强度降低到进入第二透明基板2的光的强度的20%以下 光学多层膜。