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    • 31. 发明授权
    • Optical filter
    • 滤光片
    • US08749903B2
    • 2014-06-10
    • US13311717
    • 2011-12-06
    • Tomohiro YamadaMasaya OginoYasuhisa Inao
    • Tomohiro YamadaMasaya OginoYasuhisa Inao
    • G02B5/22G02F1/03
    • G02B5/223G02B5/008G02B5/201G02B5/204H01L27/1462H01L27/14621
    • An optical filter that transmits light of the visible light region includes a dielectric substrate; a dielectric layer that is formed on a surface of the dielectric substrate; and a first metal structure group in which a plurality of first metal structures are arranged two-dimensionally in an isolated state in the in-plane direction of the dielectric substrate, that is provided between the dielectric substrate and the dielectric layer, comprising: the first metal structures having first and second lengths in first and second directions orthogonal to each other, which lengths are equal to or less than a first wavelength in the visible light region; and a transmittance of the first wavelength being reduced or a reflectance being increased by surface plasmons induced on a surface of the first metal structures by resonance between light incident on the dielectric substrate or the dielectric layer and the first metal structures.
    • 透射可见光区域的光的滤光器包括电介质基片; 介电层,其形成在所述电介质基板的表面上; 以及设置在所述电介质基板和所述电介质层之间的所述电介质基板的面内方向上以隔离状态二维地配置多个所述第一金属结构体的第一金属结构体,所述第一金属结构体包括:所述第一金属结构体, 在第一和第二方向上具有彼此正交的第一和第二长度的金属结构,其长度等于或小于可见光区域中的第一波长; 并且通过入射到电介质基板或电介质层上的光与第一金属结构之间的共振,在第一金属结构的表面上引起的表面等离子体激元的第一波长的透射率减小或反射率增加。
    • 32. 发明授权
    • Target substance-detecting apparatus and target substance-detecting method
    • 靶物质检测装置和靶物质检测方法
    • US08314935B2
    • 2012-11-20
    • US12672067
    • 2008-09-25
    • Yoichiro HandaTomohiro Yamada
    • Yoichiro HandaTomohiro Yamada
    • G01J3/447G01N21/55
    • G01N21/554B82Y15/00B82Y20/00
    • A target substance-detecting apparatus for detecting a target substance in an analyte comprises a detecting device having a substrate and metal structures capable of causing a plasmon resonance arranged thereon, an illumination optical system for illuminating an incident light containing a polarization component polarized in a first direction onto the detecting device to cross the arranged metal structures, a light-receiving device for receiving light containing the polarization component polarized in the first direction and transmitted through or reflected by the detecting device, and an arithmetic unit for calculating on signals from the light-receiving device to analyze a characteristic of the analyte; the metal structures arranged at first intervals not more than 1/10 of a plasmon resonance wavelength in lines in the first direction and at second intervals not less than ¼ of the plasmon resonance wavelength and not more than the wavelength in lines parallel in a second direction.
    • 用于检测分析物中的目标物质的目标物质检测装置包括具有基板的检测装置和能够引起其上排列的等离子体共振的金属结构,照明光学系统,用于照射包含第一 方向移动到检测装置上以穿过排列的金属结构;光接收装置,用于接收包含在第一方向上偏振并被检测装置透射或反射的偏振分量的光,以及用于计算来自光的信号的运算单元 接收装置分析分析物的特征; 金属结构以第一方向排列的等离子体共振波长的1/10不等于等离子体共振波长的1/4以上的第一方向的第二间隔,并且不大于沿第二方向平行的波长的波长 。
    • 37. 发明申请
    • OPTICAL ELEMENT AND METHOD FOR PREPARING THE SAME, SENSOR APPARATUS AND SENSING METHOD
    • 光学元件及其制备方法,传感器装置和感测方法
    • US20100097610A1
    • 2010-04-22
    • US11961216
    • 2007-12-20
    • Tomohiro YamadaRyo Kuroda
    • Tomohiro YamadaRyo Kuroda
    • G01N21/55
    • G01N21/554G01N33/54373
    • In the fields of biosensing and the like, achievement of high sensitivity and high performance has been demanded in the concentration detection of target substances. In order to meet such demand, disclosed is an optical element utilizing the localized surface plasmon resonance, including: a dielectric substrate; a first group of metal microstructures in which a plurality of metal microstructures is supported on a dielectric substrate in an in-plane direction of the substrate; and a second group of metal microstructures in which a plurality of metal microstructures is disposed in the in-plane direction, and each of the metal microstructures is partially exposed to the outside; wherein the first group of metal microstructures and the second group of metal microstructures are laminated so as to be separated from each other by 100 nm or more.
    • 在生物传感等领域中,目标物质的浓度检测中要求达到高灵敏度,高性能。 为了满足这样的要求,公开了利用局部表面等离子体共振的光学元件,包括:电介质基板; 第一组金属微结构,其中多个金属微结构在基板的面内方向上被支撑在电介质基板上; 以及第二组金属微结构,其中多个金属微结构在面内方向上设置,并且每个金属微结构部分暴露于外部; 其中所述第一组金属微结构和所述第二组金属微结构被层压以便彼此分离100nm以上。