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    • 3. 发明授权
    • Optical recording device and optical recording and reproduction device
    • 光记录装置及光记录再生装置
    • US08050164B2
    • 2011-11-01
    • US12266285
    • 2008-11-06
    • Jiro MinabeYasuhiro Ogasawara
    • Jiro MinabeYasuhiro Ogasawara
    • G11B7/00
    • G11B7/1381G03H1/04G03H1/0465G03H2222/35G11B7/0065G11B7/1378
    • An optical recording device includes a light source, a spatial light modulator, a correcting optical system and a light guiding section. The spatial light modulator includes plural pixels, a signal light region that displays a signal light pattern, and a reference light region that displays a reference light pattern. The spatial light modulator modulates and outputs incident light for each pixel in accordance with a display pattern. The correcting optical system includes a pair of axicon lenses that correct the emitted light from the light source so as to flatten the light intensity distribution thereof on an irradiated surface of the spatial light modulator. The light guiding section guides the corrected light to the spatial light modulator. The signal light and the reference light are irradiated onto an optical recording medium simultaneously and a hologram is recorded into the optical recording medium.
    • 光记录装置包括光源,空间光调制器,校正光学系统和导光部。 空间光调制器包括多个像素,显示信号光图案的信号光区域和显示参考光图案的参考光区域。 空间光调制器根据显示图案调制并输出每个像素的入射光。 校正光学系统包括一对旋转透镜,其校正来自光源的发射光,以使其在空间光调制器的照射表面上的光强度分布变平。 导光部将校正后的光导向空间光调制器。 信号光和参考光同时照射到光学记录介质上,并将全息图记录到光学记录介质中。
    • 5. 发明授权
    • Hologram decoding apparatus, hologram decoding method and computer readable medium
    • 全息解码装置,全息图解码方法和计算机可读介质
    • US07982932B2
    • 2011-07-19
    • US12112054
    • 2008-04-30
    • Jiro Minabe
    • Jiro Minabe
    • G03H1/16
    • G11B7/0065G03H1/16G11B7/128G11B20/10G11B2220/2504
    • A hologram decoding apparatus includes: an imaging device that receives a reproduced image obtained by reading an encoded image from a hologram recording medium in which a Fourier transform image of the encoded image with n pixels representing digital information is recorded, n being an integer of 2 or more, and that outputs the reproduced image with k resolution pixel numbers, k being an integer more than n; a storing unit that stores decoding patterns and digital information corresponding to the decoding patterns, wherein a decoding pattern from among the decoding patterns corresponds to the reproduced image, which is encoded with m pixels of k≧m>n; and a decoding unit that refers to the decoding patterns to specify the decoding pattern; and that carries out a decoding process to set the digital information corresponding to the specified decoding pattern as digital information of the reproduced image.
    • 全息图解码装置包括:成像装置,其接收通过从全息图记录介质读取编码图像而获得的再现图像,在全息图记录介质中记录了表示数字信息的n个像素的编码图像的傅里叶变换图像,n为2的整数 以上,并以k分辨率像素数输出再生图像,k为大于n的整数; 存储单元,其存储与解码图案对应的解码图案和数字信息,其中来自解码图案的解码图案对应于由m≥m> n的m个像素编码的再现图像; 以及解码单元,其参考所述解码模式以指定所述解码模式; 并且执行解码处理以将与指定的解码模式相对应的数字信息设置为再现图像的数字信息。
    • 6. 发明申请
    • EXPOSURE APPARATUS, IMAGE FORMING APPARATUS, AND HOLOGRAM RECORDING APPARATUS
    • 曝光装置,图像形成装置和手持式记录装置
    • US20110013156A1
    • 2011-01-20
    • US12726599
    • 2010-03-18
    • Katsunori KawanoJiro Minabe
    • Katsunori KawanoJiro Minabe
    • G03B27/00G02B5/32
    • G02B5/32G03H2001/0434G03H2260/12G03H2270/54H04N1/506
    • An exposure apparatus according to an exemplary embodiment of the invention includes a substrate in which plural light-emitting devices are arrayed one-dimensionally or two-dimensionally; and a hologram recording layer that is disposed on the substrate, plural holograms being recorded in the hologram recording layer by holographic interference between a first beam and a second beam such that a predetermined number of beam spots are disposed in the hologram recording layer in a predetermined array direction according to a portion of light-emitting devices, the portion of light-emitting devices being selected as emitters from the plural light-emitting devices, the beam spot being formed by a light beam of the second beam, the first beam passing through an optical path of diffusion light that passes through the emitter, the second beam passing through an optical path of convergent light that converges at a predetermined distance outside the optical path of the first beam.
    • 根据本发明的示例性实施例的曝光装置包括其中多个发光器件被一维或二维排列的衬底; 以及设置在基板上的全息图记录层,通过第一光束和第二光束之间的全息干涉将多个全息图记录在全息图记录层中,使得预定数量的光束点以预定的方式设置在全息图记录层中 根据发光装置的一部分的阵列方向,从多个发光装置中选择发光装置的发光部,所述光束点由第二光束的光束形成,第一光束通过 通过发射器的扩散光的光路,第二光束通过在第一光束的光路外的预定距离会聚的会聚光的光路。
    • 9. 发明申请
    • EXPOSURE DEVICE AND IMAGE FORMING APPARATUS
    • 曝光装置和图像形成装置
    • US20100259592A1
    • 2010-10-14
    • US12614799
    • 2009-11-09
    • Jiro MINABEKatsunori KAWANOKazuhiro HAYASHIYasuhiro OGASAWARAShin YASUDA
    • Jiro MINABEKatsunori KAWANOKazuhiro HAYASHIYasuhiro OGASAWARAShin YASUDA
    • B41J2/435
    • G03G15/326G02B5/1885G02B5/32G03G15/04045G03H1/04G03H2001/0434G03H2001/0439G03H2250/37G03H2260/34
    • There is provided an exposure device including: a light-emitting element array having an elongated support and plural light-emitting elements, the light-emitting elements being arranged in at least one row along a length direction of the support such that a spacing between two adjacent light-emitting elements is a pre-specified first spacing; and a hologram element array having a hologram recording layer disposed on the support and plural hologram elements formed, the plural hologram elements corresponding with each of the light-emitting elements and being formed such that a spacing along the support length direction between two adjacent hologram elements is the first spacing, and a diameter in the support length direction of each of the plural hologram elements being larger than the first spacing, such that a respective light emitted from each of the light-emitting elements is diffracted and focused toward a pre-specified image-forming plane by the corresponding hologram element.
    • 提供了一种曝光装置,包括:发光元件阵列,其具有细长的支撑件和多个发光元件,所述发光元件沿着支撑件的长度方向布置在至少一排中,使得两个 相邻的发光元件是预先指定的第一间隔; 以及全息元件阵列,其具有设置在支撑体上的全息图记录层和形成的多个全息元件,所述多个全息元件对应于每个发光元件并且形成为使得沿两个相邻全息元件之间的支撑长度方向的间隔 是第一间隔,并且多个全息元件中的每一个的支撑长度方向上的直径大于第一间隔,使得从每个发光元件发射的各个光被衍射并聚焦到预先指定的 成像平面由相应的全息元件。