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    • 6. 发明申请
    • Sensor Device
    • 传感器设备
    • US20060216200A1
    • 2006-09-28
    • US11276255
    • 2006-02-21
    • Yasuhiro NagatomoMitsuro SugitaMamoru Uchida
    • Yasuhiro NagatomoMitsuro SugitaMamoru Uchida
    • G01N33/48
    • G01N21/774G01N21/4133G01N33/54373G01N2021/7779
    • The present invention provides a sensor device for detecting a substance contained in a fluid comprising a first photonic crystal region, a second photonic crystal region, a first channel which is connected to the first photonic crystal region, and passes the fluid containing the substance therein, a second channel which is connected to the second photonic crystal region, and passes a fluid for reference therein, an optical waveguide which is connected to the first photonic crystal region and the second photonic crystal region, and guides light, and a detecting section for detecting a difference between a light which has passed through the optical waveguide and the first photonic crystal region and a light which has passed through the optical waveguide and the second photonic crystal region.
    • 本发明提供了一种用于检测包含在第一光子晶体区域,第二光子晶体区域,与第一光子晶体区域连接的第一通道并使含有物质的流体通过的流体中的物质的传感器装置, 第二通道,连接到第二光子晶体区域,并通过用于参考的流体;连接到第一光子晶体区域和第二光子晶体区域并引导光的光波导;以及检测部分,用于检测 通过光波导的光和第一光子晶体区域的光与通过光波导和第二光子晶体区域的光之间的差。
    • 7. 发明授权
    • Photonic crystal and waveguide sensor device
    • 光子晶体和波导传感器装置
    • US07731902B2
    • 2010-06-08
    • US11276255
    • 2006-02-21
    • Yasuhiro NagatomoMitsuro SugitaMamoru Uchida
    • Yasuhiro NagatomoMitsuro SugitaMamoru Uchida
    • G01N21/63G01N21/01G01J3/00
    • G01N21/774G01N21/4133G01N33/54373G01N2021/7779
    • The present invention provides a sensor device for detecting a substance contained in a fluid comprising a first photonic crystal region, a second photonic crystal region, a first channel which is connected to the first photonic crystal region, and passes the fluid containing the substance therein, a second channel which is connected to the second photonic crystal region, and passes a fluid for reference therein, an optical waveguide which is connected to the first photonic crystal region and the second photonic crystal region, and guides light, and a detecting section for detecting a difference between a light which has passed through the optical waveguide and the first photonic crystal region and a light which has passed through the optical waveguide and the second photonic crystal region.
    • 本发明提供了一种用于检测包含在第一光子晶体区域,第二光子晶体区域,与第一光子晶体区域连接的第一通道并使含有物质的流体通过的流体中的物质的传感器装置, 第二通道,连接到第二光子晶体区域,并通过用于参考的流体;连接到第一光子晶体区域和第二光子晶体区域并引导光的光波导;以及检测部分,用于检测 通过光波导的光和第一光子晶体区域的光与通过光波导和第二光子晶体区域的光之间的差。
    • 10. 发明授权
    • Two-dimensional photonic crystal surface emitting laser
    • 二维光子晶体表面发射激光器
    • US08855158B2
    • 2014-10-07
    • US13820436
    • 2011-09-14
    • Yasuhiro NagatomoShoichi Kawashima
    • Yasuhiro NagatomoShoichi Kawashima
    • H01S5/00H01S5/10H01S5/34B82Y20/00H01S5/343H01S5/18H01S5/20
    • H01S5/105B82Y20/00H01S5/18H01S5/187H01S5/2009H01S5/34H01S5/34333H01S2301/185
    • Provided is a two-dimensional photonic crystal surface emitting laser that enables easy laser oscillation with two-dimensionally symmetric intensity distribution, using a photonic crystal of a lattice structure having different lengths of primitive translation vectors in plane, realized in a two-dimensional photonic crystal surface emitting laser including an active layer, and a two-dimensional photonic crystal having a two-dimensionally periodic refractive index profile disposed in a vicinity of the active layer. The two-dimensional photonic crystal has a lattice structure where two primitive translation vectors in plane have different lengths, a shape of a member forming lattice points included in a unit cell of the lattice structure has anisotropy with respect to directions of the two primitive translation vectors, and the anisotropy of the shape of the member permits a difference of a coupling coefficient to be smaller than a case where the shape of the member is isotropic.
    • 提供一种二维光子晶体表面发射激光器,其使用在平面中具有不同长度的原始平移矢量的晶格结构的光子晶体,能够容易地进行具有二维对称强度分布的激光振荡,在二维光子晶体 包括有源层的表面发射激光器和具有设置在有源层附近的具有二维周期性折射率分布的二维光子晶体。 二维光子晶体具有晶格结构,其中平面中的两个原始平移向量具有不同的长度,形成格子结构的单位单元中的晶格点的成员的形状相对于两个原始翻译矢量的方向具有各向异性 ,并且构件的形状的各向异性允许耦合系数的差异小于构件的形状各向同性的情况。