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On-chip integrated differential optical microring refractive index sensing platform based on a laminar flow scheme

机译:基于层流方案的片上集成差分光学微环折射率传感平台

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We propose an on-chip integrated differential optical microring refractive index sensing platform which leverages laminar flow conditions. Close spacing between a sensing and a reference resonator, and sharing the same microfluidic channel allows the two resonators to experience similar environmental disturbances, such as temperature fluctuations and fluidic-induced transients, achieving reliable and sensitive sensing performance. We obtain a noise floor of 80.0 MHz (0.3 pm) and a bulk refractive index sensitivity of 17.0 THz per refractive index unit (RIU) (64.2 nm/RIU), achieving a limit of detection of 1.4 x 10(-5) RIU in a 30 min and an 8 degrees C window. (C) 2015 Optical Society of America
机译:我们提出了一种利用层流条件的片上集成差分光学微环折射率传感平台。感应谐振器和参考谐振器之间的紧密间距以及共享相同的微流体通道,使两个谐振器可以经历类似的环境干扰,例如温度波动和流体感应的瞬变,从而实现可靠而灵敏的感应性能。我们获得80.0 MHz(0.3 pm)的本底噪声和每个折射率单位(RIU)(64.2 nm / RIU)的17.0 THz的整体折射率灵敏度,从而实现了1.4 x 10(-5)RIU的检测极限30分钟和8摄氏度的窗口。 (C)2015年美国眼镜学会

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