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    • 72. 发明授权
    • Holographic recording and reproducing apparatus
    • 全息记录和再现设备
    • US07916369B2
    • 2011-03-29
    • US10796394
    • 2004-03-09
    • Takuya Tsukagoshi
    • Takuya Tsukagoshi
    • G03H1/16
    • G03H1/26G11B7/0065G11C13/042
    • A holographic recording and reproducing apparatus includes a spatial light modulator, a Fourier transform lens, a reverse Fourier transform lens, a Charge Coupled Device (CCD) image sensor, and a pinhole disposed at a confocal point of the Fourier transform lens and the reverse Fourier transform lens, the holographic recording medium being disposed between the Fourier transform lens and the reverse Fourier transform lens, and the focal length of the Fourier transform lens and focal length of the reverse Fourier transform lens being different from each other, and the pinhole being disposed between the holographic recording medium and the Fourier transform lens or between the holographic recording medium and the reverse Fourier transform lens.
    • 全息记录和再现装置包括空间光调制器,傅立叶变换透镜,反傅里叶变换透镜,电荷耦合器件(CCD)图像传感器和设置在傅里叶变换透镜的共焦点处的针孔和反向傅立叶 变换透镜,全息记录介质设置在傅里叶变换透镜和反傅里叶变换透镜之间,傅里叶变换透镜的焦距和反相傅里叶变换透镜的焦距彼此不同,并且所述针孔被布置 在全息记录介质和傅立叶变换透镜之间或全息记录介质和反傅立叶变换透镜之间。
    • 77. 发明授权
    • Optical system
    • 光学系统
    • US07643229B2
    • 2010-01-05
    • US11803431
    • 2007-05-14
    • Takuya Tsukagoshi
    • Takuya Tsukagoshi
    • G02B7/02G02B5/10
    • G02B6/12B82Y20/00G02B1/007G02B6/42G02B6/4201G02B6/4214
    • An optical system includes a negative refraction lens and a compensating element. The negative refraction lens is a flat plate formed by a material exhibiting negative refraction, and a surface on which light is incident and a surface from which the light is emerged are formed to be flat and parallel. The compensating element is an optical element which makes light incident at a predetermined angle, emerge at another predetermined angle. A light ray is emitted from an object point on an object plane, and reaches an image point on an image plane after being refracted twice by a negative refraction lens. The light ray is reflected by the compensating element, then refracted at an emergence-side pupil, and reaches the image point upon being reflected once again by the compensating element.
    • 光学系统包括负折射透镜和补偿元件。 负折射透镜是由显示负折射的材料和光入射的表面形成的平板,并且出现光的表面形成为平坦和平行的。 补偿元件是使光以预定角度入射的光学元件,以另外的预定角度出现。 从物体平面上的物点发射光线,并且在被负折射透镜折射两次之后到达图像平面上的图像点。 光线被补偿元件反射,然后在出射侧瞳孔处折射,并且在被补偿元件再次反射时到达图像点。
    • 78. 发明授权
    • Method for recording and reproducing holographic data and holographic recording medium
    • 用于记录和再现全息数据和全息记录介质的方法
    • US07313072B2
    • 2007-12-25
    • US10782072
    • 2004-02-19
    • Takuya Tsukagoshi
    • Takuya Tsukagoshi
    • G11B7/00
    • G11B7/0065G03H1/0248G03H1/26G03H2001/0417G11B7/007G11B7/0938G11B7/24044G11B7/24062G11B7/2407
    • A holographic recording medium includes a recording layer in which data are to be recorded as phase information of light by projecting a signal beam and a reference beam thereonto, a reflective surface disposed on the opposite side of the recording layer as viewed in the direction of signal beam and reference beam incidence on the holographic recording medium and formed with a convex pattern or a concave pattern having a trapezoidal cross-section, a minimum width of a convex surface of the convex pattern or a concave surface of the concave pattern being set equal to or larger than a beam spot diameter of the signal beam or the reference beam at a diffraction limit thereof. According to the thus constituted holographic recording medium, it is possible to easily remove noise light contained in a signal beam and a reference beam.
    • 全息记录介质包括:记录层,其中数据将通过将信号光束和参考光束投射到其上而被记录为光的相位信息;反射表面,设置在从信号方向观察的记录层的相反侧 光束和参考光束入射在全息记录介质上并形成有凸形图案或具有梯形横截面的凹形图案,凸形图案的凸表面的最小宽度或凹形图案的凹面被设置为等于 或大于其衍射极限处的信号光束或参考光束的光点直径。 根据这样构成的全息记录介质,可以容易地去除包含在信号光束和参考光束中的噪声光。
    • 79. 发明申请
    • Optical system
    • 光学系统
    • US20070268600A1
    • 2007-11-22
    • US11803431
    • 2007-05-14
    • Takuya Tsukagoshi
    • Takuya Tsukagoshi
    • G02B9/00
    • G02B6/12B82Y20/00G02B1/007G02B6/42G02B6/4201G02B6/4214
    • An optical system includes a negative refraction lens and a compensating element. The negative refraction lens is a flat plate formed by a material exhibiting negative refraction, and a surface on which light is incident and a surface from which the light is emerged are formed to be flat and parallel. The compensating element is an optical element which makes light incident at a predetermined angle, emerge at another predetermined angle. A light ray is emitted from an object point on an object plane, and reaches an image point on an image plane after being refracted twice by a negative refraction lens. The light ray is reflected by the compensating element, then refracted at an emergence-side pupil, and reaches the image point upon being reflected once again by the compensating element.
    • 光学系统包括负折射透镜和补偿元件。 负折射透镜是由显示负折射的材料和光入射的表面形成的平板,并且出现光的表面形成为平坦和平行的。 补偿元件是使光以预定角度入射的光学元件,以另外的预定角度出现。 从物体平面上的物点发射光线,并且在被负折射透镜折射两次之后到达图像平面上的图像点。 光线被补偿元件反射,然后在出射侧瞳孔处折射,并且在被补偿元件再次反射时到达图像点。
    • 80. 发明申请
    • Image detection method and image detecting apparatus
    • 图像检测方法和图像检测装置
    • US20070171536A1
    • 2007-07-26
    • US11649424
    • 2007-01-03
    • Takuya Tsukagoshi
    • Takuya Tsukagoshi
    • G02B3/00
    • G02B13/24B82Y20/00G02B1/005G02B1/007G02B21/02G02B23/2423
    • An image detection method includes steps of transferring image information in which, information of an object image on a sample (object plane) is transferred to a detection plane (image plane) of an imaging element via an optical system which includes a negative refraction lens formed of a material exhibiting negative refraction, detecting image in which, image-plane image information transferred to the detection plane (image plane) of the imaging device is detected optically, and calculation processing in which, for the image-plane image information which is detected, information of the object image is calculated by performing a calculation processing based on optical characteristics of the optical system.
    • 图像检测方法包括以下步骤:通过包括形成的负折射透镜的光学系统传送其中将样品(物体平面)上的对象图像的信息传送到成像元件的检测平面(图像平面)的图像信息的步骤 显示负折射的材料的检测图像,其中传输到成像装置的检测平面(图像平面)的图像平面图像信息被光学检测的图像,以及对于检测到的图像平面图像信息的计算处理 通过执行基于光学系统的光学特性的计算处理来计算对象图像的信息。