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Integrated bio/chemical microsystems employing optical detection: the clip-on

机译:集成的生物/化学微系统,采用光学检测:夹式

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The fabrication and lest of a new integrated optical detection circuit, which can be coupled to external microcapillary analysis systems, is presented. Simple optical waveguide and photodiode circuits, as well as the system for coupling light through the external microcapillary chemical transport system, are included on the same silicon, 'clip-on', chip. A chemical reaction taking place in the external microcapillary system, which gives rise to a change in absorbance or luminescence, is detected as the reaction front moves past the optical detection circuit. Mesa photodiode structures are butt coupled to multilayer glass optical waveguides and have responsivities of about 0.5 plus a broad spectral response. The buried optical waveguide structures, which are formed in low loss (0.5 dB cm(-1)) germanium doped core glass, couple very effectively to the mesa diodes. Light is coupled to the waveguides via optical fibers which are fastened to the chip by means of simple connectors etched into the silicon. Fluids are transported to and from the chip by means of quartz microcapillary, similarly fastened to the chip by means of an integrated connector. [References: 4]
机译:介绍了一种新型集成光学检测电路的制造过程,以免与外部微毛细管分析系统耦合。简单的光波导和光电二极管电路,以及通过外部微毛细管化学传输系统耦合光的系统,都包含在同一硅片上。当反应前沿移过光学检测电路时,将检测到发生在外部微毛细管系统中的化学反应,该化学反应会引起吸光度或发光度的变化。台面光电二极管结构对接耦合至多层玻璃光波导,并具有约0.5的响应度以及宽光谱响应。在低损耗(0.5 dB cm(-1))掺锗芯玻璃中形成的掩埋光波导结构非常有效地耦合到台面二极管。光通过光纤耦合到波导,光纤通过刻蚀到硅中的简单连接器固定在芯片上。流体通过石英微毛细管进出芯片,同样通过集成连接器固定在芯片上。 [参考:4]

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