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Ultra Sensitive Bio-Chemical Sensors Based on Optical Resonance

机译:基于光学共振的超敏感生物化学传感器

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With the focus on bio terrorism and environmental sensing, there is need for development of smart integrated bio-chemical sensors. We investigate Whispering Gallery Mode (WGM) based High Q micro cavity as a biosensor. We integrate the lab-on-a-chip approach with High Q technology to develop highly selective and smart sensors for in-situ detection of aqueous media based agents. We have investigated the ring based micro-cavity structure as a sensor. We identify the detection of agent through the changes observed in the wavelength shift and Q factor as a result of enzyme-substrate interactions. We report an experimental demonstration of a compact micro-cavity based biochemical sensor based on the micro ring structure. The micro-cavity, fabricated on a silica-on-silicon substrate, is designed to have a resonant wavelength (1) near 1.34 μm. The transmission spectrum of the sensor is measured with different ambient refractive indices ranging from n =1.0 to 1.5. Chemical detection was achieved by measuring the shift in resonant wavelength, and variation to the quality factor
机译:凭借重点对生物恐怖主义和环境感官,需要开发智能集成生物化学传感器。我们调查基于低Q微型腔作为生物传感器的耳语画廊模式(WGM)。我们与高Q技术集成了实验室接近方法,开发出高度选择性和智能传感器,用于出于原位检测水性介质的代理。我们研究了基于环的微腔结构作为传感器。我们通过在酶 - 底物相互作用的结果中观察到的波长移位和Q因子中观察到的变化来识别药剂的检测。我们报告了基于微环结构的紧凑微腔的生物化学传感器的实验证明。在二氧化硅上硅衬底上制造的微腔设计成具有近1.34μm的谐振波长(1)。传感器的透射光谱用不同的环境折射率测量,范围为n = 1.0至1.5。通过测量谐振波长的变化和质量因子的变化来实现化学检测

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