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Integrated microfluidic flowmeter based on a micro-FBG inscribed in Co2+-doped optical fiber

机译:基于掺Co2 +的光纤中的微型FBG的集成式微流流量计

摘要

A novel microfluidic flowmeter integrated with microfiber Bragg grating (μFBG) is presented. Two glass capillaries and a short length of high-light-absorption Co2+ -doped optical fiber were stacked inside a larger outer capillary tube. The stack was then drawn into a tapered device. Two microchannels with the diameter of ∼50 μm were formed inside the capillaries for flowing of microfluidics. An FBG was inscribed in the tapered Co2+ -doped fiber with waist diameter of ∼70 μm , and acts as a flow-rate sensor. A pump laser with wavelength of 1480 nm was utilized to locally heat the μFBG, rendering the μFBG as miniature "hot-wire" flowmeter. The flow rate of the liquid in the micro-channels is determined by the induced wavelength shift of the μFBG. The experimental results achieve a minimum detectable change of ∼16 nL/s in flow rate, which is very promising in the use as part of biochips.
机译:提出了一种集成了超细纤维布拉格光栅(μFBG)的新型微流体流量计。将两个玻璃毛细管和短长度的高吸光度的Co2 +掺杂光纤堆叠在一个较大的外部毛细管内。然后将叠层拉入锥形装置。在毛细管内部形成两个直径约50μm的微通道,以使微流体流动。在腰部直径为〜70μm的锥形Co2 +掺杂光纤中刻有FBG,它用作流量传感器。利用波长为1480 nm的泵浦激光器对μFBG进行局部加热,从而使μFBG成为微型“热线”流量计。微通道中液体的流速由μFBG引起的波长偏移确定。实验结果使流量的最小可检测变化达到了16 nL / s,这在用作生物芯片的一部分中非常有希望。

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