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    • 95. 发明授权
    • Optical device and optical system
    • 光学设备和光学系统
    • US08080777B2
    • 2011-12-20
    • US12369371
    • 2009-02-11
    • Takashi MurookaHideyasu IshibashiIchiro Amimori
    • Takashi MurookaHideyasu IshibashiIchiro Amimori
    • G02F1/01G01J3/50G01J3/06G01J3/447G02B26/08G02B5/30
    • G02B27/288G01J3/28
    • Provided is an optical device, comprising a plurality of polarizers that are arranged along a propagation direction of incident light; a first phase element that is disposed between the plurality of polarizers and that has a phase lag axis forming a prescribed angle relative to transmission axes of the polarizers arranged along the propagation direction; and a second phase element that is disposed between the first phase element and one of the polarizers arranged along the propagation direction, and that provides the incident light with a prescribed phase difference. An angle of the phase lag axis of the second phase element is adjusted such that the optical device transmits light in a prescribed wavelength region in the incident light.
    • 提供了一种光学装置,包括沿着入射光的传播方向布置的多个偏振器; 第一相位元件,其设置在所述多个偏振器之间并且具有相对于沿着所述传播方向布置的偏振器的透射轴形成规定角度的相位滞后轴; 以及第二相位元件,其设置在沿着传播方向布置的第一相位元件和偏振器中的一个之间,并且提供具有规定相位差的入射光。 调整第二相位元件的相位延迟轴的角度,使得光学装置在入射光中透射规定波长区域中的光。
    • 97. 发明申请
    • SPECTRAL OPTICAL SENSOR AND METHOD FOR PRODUCING AN OPTICAL SPECTRAL SENSOR
    • 光谱光学传感器和生产光学光谱传感器的方法
    • US20090323060A1
    • 2009-12-31
    • US12309897
    • 2007-07-31
    • Dietmar Knipp
    • Dietmar Knipp
    • G01J3/447H01L31/0224H01L31/0232H01L31/18G01J4/00
    • G01J3/12G01J3/02G01J3/0259G01J2003/1213H01L27/14643
    • The invention relates to an optical spectral sensor for determining the spectral information of incident light, in particular in the visible and infrared spectral range, with at least one optoelectronic semiconductor arrangement and at least one metal film, which is surrounded by a dielectric, wherein the metal film has a periodic pattern, wherein the at least one optoelectronic semiconductor arrangement and the at least one patterned metal film are arranged in such a way that light to be detected initially passes through the patterned metal film and then impinges on the optoelectronic semiconductor arrangement, wherein the optical spectral sensor is formed in such a way that the spectral sensitivity is determined essentially by the optical properties of the patterned metal film.
    • 本发明涉及一种光谱传感器,用于利用至少一个光电子半导体装置和被电介质包围的至少一个金属膜确定入射光的光谱信息,特别是在可见光和红外光谱范围内,其中, 金属膜具有周期性图案,其中所述至少一个光电半导体布置和所述至少一个图案化金属膜以使得要被检测的光初始通过图案化的金属膜然后撞击在光电子半导体布置上的方式布置, 其中光谱传感器以这样的方式形成,使得光谱灵敏度基本上由图案化的金属膜的光学特性确定。
    • 100. 发明授权
    • Spectroscope and microspectroscope equipped therewith
    • 分光镜和配有其的显微光谱仪
    • US07256890B2
    • 2007-08-14
    • US11281536
    • 2005-11-18
    • Hisao OsawaNaoshi AikawaAkira Adachi
    • Hisao OsawaNaoshi AikawaAkira Adachi
    • G01J3/28G01J3/447
    • G02B27/286G01B9/04G01J3/02G01J3/0205G01J3/021G01J3/0224G01J3/0235G01J3/0256G01J3/0294G01J3/18G01N21/21
    • A spectroscope capable of suppressing the dimension and the cost with avoiding a problem caused by polarization dependency of the diffraction grating. The spectroscope includes a polarizing beam splitter plate 3 that divides the light from an input fiber 1 into a first and a second optical paths and polarizes each light of each optical path having different direction of polarization with each other, a Fresnel rhomb half wave plate 5 that arranges the direction of polarization of the light in the first optical path into that in the second optical path and a plane mirror 4 that deflects the second optical path such that at least a portion of an area where the light through the first optical path is incident on the diffraction grating 6 and an area where the light through the second optical path is incident on the diffraction grating overlap each other.
    • 能够抑制衍射光栅的偏振依赖性引起的问题的能够抑制尺寸和成本的分光器。 分光镜包括:偏振分束板3,其将来自输入光纤1的光分成第一和第二光路,并且使具有不同偏振方向的每个光路的每个光彼此偏振;菲涅耳菱形半波片5 其将第一光路中的光的偏振方向排列成第二光路中的偏振方向,以及平面镜4,其使第二光路偏转,使得通过第一光路的光的至少一部分区域为 入射在衍射光栅6上的入射光和穿过第二光路的光入射到衍射光栅上的区域彼此重叠。