OPTICAL SENSOR FOR ANALYTE DETECTION
    4.
    发明公开
    OPTICAL SENSOR FOR ANALYTE DETECTION 审中-公开
    OPTISCHER传感器ZUM NACHWEIS VON ANALYTEN

    公开(公告)号:EP2904376A4

    公开(公告)日:2016-07-20

    申请号:EP13844221

    申请日:2013-10-04

    CPC classification number: G01N21/63 G01N21/6428 G01N21/6458 G01N21/648

    Abstract: Devices, systems, and methods for detection of an analyte in a sample are disclosed. In some embodiments, an optical sensor can include a metallic layer and a plurality of dielectric pillars extending through the metallic layer. A plurality of regions of concentrated light can be supported in proximity to the ends of the plurality of dielectric pillars when a surface of the metallic layer is illuminated. Concentrated light within one or more of these regions can interact with an analyte molecule, allowing for detection of the analyte.

    Abstract translation: 公开了用于检测样品中分析物的装置,系统和方法。 在一些实施例中,光学传感器可以包括延伸穿过金属层的金属层和多个介电柱。 当金属层的表面被照亮时,多个集中的光的区域可以被支撑在多个介电柱的端部附近。 一个或多个这些区域内的浓缩光可与分析物分子相互作用,允许检测分析物。

    PHOTONIC CRYSTAL MICROCAVITIES FOR STRONG COUPLING BETWEEN AN ATOM AND THE CAVITY FIELD AND METHOD OF FABRICATING THE SAME
    10.
    发明公开
    PHOTONIC CRYSTAL MICROCAVITIES FOR STRONG COUPLING BETWEEN AN ATOM AND THE CAVITY FIELD AND METHOD OF FABRICATING THE SAME 审中-公开
    PHOTONISCHE KRISTALLMIKRORESONATORENFÜREINE STARKE KOPPLUNG ZWISCHEN EINEM ATOM UND DEM RESONATORFELD UND VERFAHREN ZU IHRER HERSTELLUNG

    公开(公告)号:EP1386185A4

    公开(公告)日:2004-08-18

    申请号:EP02766884

    申请日:2002-05-02

    CPC classification number: H01S5/10 B82Y20/00 G02B6/1225 H01S5/105

    Abstract: Optical microcavities (12) based on two dimensional arrays of holes (14,18) defined in photonic crystals (10) are optimized for maximum Q factors and minimum mode volume. They can also be used for strong coupling between the cavity field and an atom trapped within a defect of the photonic crystals (10), or for tunable filters if the holes are filled with electro-optical polymers. In one embodiment the Q factor of a cavity is increased by elongation of a plurality of holes in at least one row in a predetermined direction. Modal structures of microcavities, as well as quality factors, mode volumes, symmetry properties and radiation patterns of localized defect modes as a function of the slab thickness and parameters of photonic crystal (10) and defects are illustrated.

    Abstract translation: 基于光子晶体(10)中定义的空穴(14,18)的二维阵列的光学微腔(12)针对最大Q因数和最小模式体积进行优化。 它们也可用于腔场与光子晶体缺陷内捕获的原子之间的强耦合,或者如果孔填充有电光聚合物,则用于可调谐滤波器。 在一个实施例中,腔体的Q因子通过在预定方向上的至少一排中的多个孔的伸长而增加。 举例说明了微腔的模态结构以及品质因数,模式体积,对称性和局部缺陷模式的辐射模式,作为光子晶体厚度和参数以及缺陷的函数。

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