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    • 3. 发明申请
    • PANORAMIC STEREOSCOPIC IMAGING SYSTEMS
    • 全景立体成像系统
    • WO2016140928A1
    • 2016-09-09
    • PCT/US2016/020125
    • 2016-02-29
    • ARKIVE, LLC
    • ROSE, Michael, HarryROSE, Jonathan, EmanuelKOBLER, Brian, Zeyar
    • H04N13/02G03B37/00G03B25/02
    • G02B13/06G02B27/1066G02B27/143G02B27/2214G03B17/17G03B35/10G03B37/06H04N13/139H04N13/189H04N13/218H04N13/243
    • An optical system for panoramic stereoscopic imaging can include an outer reflector and an inner reflector, which can both be configured to reflect light to a camera. The outer reflector can include striations or other reflection elements to turn the light that is reflected to the camera such that first and second light rays that are parallel and offset from each other (e.g., suitable for stereoscopic 3D viewing) can be reflected by the respective outer and inner reflectors to the camera. The outer reflector can be partially reflective and partially transmissive so that some light can pass through the outer reflector to be reflected by the inner reflector to the camera. The camera can capture a single image having a first portion that corresponds to a view generated by the inner reflector, and a second portion that corresponds to a stereoscopically offset view generated by the outer reflector.
    • 用于全景立体成像的光学系统可以包括外部反射器和内部反射器,其可以被配置为将光反射到照相机。 外部反射器可以包括条纹或其他反射元件,以将反射到相机的光转动,使得彼此平行和偏移的第一和第二光线(例如,适合立体3D观看)可以被相应的 外部和内部反射器到相机。 外部反射器可以是部分反射和部分透射的,使得一些光可以穿过外部反射器以被内部反射器反射到照相机。 照相机可以拍摄具有对应于由内部反射器产生的视图的第一部分的单个图像,以及对应于由外部反射器产生的立体偏移视图的第二部分。
    • 8. 发明申请
    • ELLIPSOMETER USING HALF MIRROR
    • ELLIPSOMETER使用半透镜
    • WO2010147300A2
    • 2010-12-23
    • PCT/KR2010/002461
    • 2010-04-20
    • KOREA RESEARCH INSTITUTE OF STANDARDS AND SCIENCECHO, Yong JaiCHO, Hyun MoCHEGAL, Won
    • CHO, Yong JaiCHO, Hyun MoCHEGAL, Won
    • G01N21/21G01N21/25G01N21/41G02B5/08
    • G01N21/211G02B27/143
    • The present invention relates to an ellipsometer using a half-mirror, and more particularly, to an ellipsometer using a half-mirror, in which, instead of using rectangular prism type or glass plate type beam splitter that transmits some of the light and reflects the rest of the light as in a conventional vertical incident type focused-beam ellipsometer, the light is reflected to half of the object lens by a half-mirror and the light reflected from the half of the focus of the object lens is not transmitted through the beam splitter but is detected directly by a photodetector, and thus light interference due to the beam splitter is prevented and the light intensity is increased to maximally four times to thereby allow more accurate and precise measurement and analysis of physical properties for a sample of nanofilm or nano-pattern.
    • 本发明涉及一种使用半反射镜的椭偏仪,更具体地说,涉及一种使用半透半反镜的椭偏仪,其中代替使用透射部分光并将其反射的矩形棱镜型或玻璃板式分束器 剩余的光如在传统的垂直入射型聚焦光束椭偏仪中那样,光被半透明反射到物镜的一半,并且从物镜的焦点的一半反射的光不透过 分光器,但是由光电检测器直接检测,因此防止了由于分束器引起的光干扰,并且将光强度增加到最大四倍,从而允许对纳米膜样品的物理性能的更准确和精确的测量和分析, 纳米图案。
    • 10. 发明申请
    • A LIGHT DETECTION ARRANGEMENT AND A METHOD FOR DETECTING LIGHT IN A LIGHT DETECTION ARRANGEMENT
    • 光检测装置和检测光检测装置中的光的方法
    • WO2010090604A1
    • 2010-08-12
    • PCT/SG2010/000041
    • 2010-02-08
    • AGENCY FOR SCIENCE, TECHNOLOGY AND RESEARCHCOMPONENT TECHNOLOGY PTE LTDLIU, TongLAM, Chew JunnFANG, Zhong PingXU, JianCHEOW, Yoon FooYU Jiaqi
    • LIU, TongLAM, Chew JunnFANG, Zhong PingXU, JianCHEOW, Yoon FooYU Jiaqi
    • H01L21/66G01B11/24G01N21/956
    • G01B11/24G01B11/245G01N21/8806G02B5/02G02B27/1006G02B27/14G02B27/141G02B27/143G02B27/144
    • In an embodiment, a light detection arrangement may be provided. The light detection arrangement may include a body structure configured to provide light, the body structure including a first light-transmissive portion and a second light-transmissive portion disposed at a distance from the first light-transmissive portion; an object receiving region arranged such that light provided by the body structure may be illuminating at least a portion of the object receiving region; a first camera having a first main optical axis; a second camera having a second main optical axis; wherein the body structure may be arranged between the first camera and the second camera on its one side and the object receiving region on its other side; wherein the first camera may be arranged such that its first main optical axis may be directed to the object receiving region via the first light-transmissive portion; wherein the second camera may be arranged such that its second main optical axis may be directed to the object receiving region via the second light-transmissive portion; an arrangement configured to provide light reflected from the object receiving region such that a first reflected light portion may be provided as a first co-axial light portion aligned to the first main optical axis, and such that a second reflected light portion may be provided as a second co-axial light portion aligned to the second main optical axis. A method for detecting light in a light detection arrangement may also be provided.
    • 在一个实施例中,可以提供光检测装置。 光检测装置可以包括构造成提供光的主体结构,所述主体结构包括设置在距离所述第一透光部分一定距离处的第一透光部分和第二透光部分; 被配置为使得由所述主体结构提供的光可以照射所述物体接收区域的至少一部分的物体接收区域; 具有第一主光轴的第一相机; 具有第二主光轴的第二相机; 其中所述身体结构可以在其一侧上布置在所述第一照相机和所述第二照相机之间,并且所述物体接收区域在其另一侧上; 其中第一相机可以被布置成使得其第一主光轴可经由第一光透射部分被引导到物体接收区域; 其中所述第二相机可以被布置成使得其第二主光轴可以经由所述第二透光部分被引导到所述物体接收区域; 配置成提供从物体接收区域反射的光,使得可以将第一反射光部分设置为与第一主光轴对准的第一同轴光部分,并且使得第二反射光部分可以设置为 与第二主光轴对准的第二同轴光部分。 还可以提供一种用于检测光检测装置中的光的方法。