Polynkin PaveL, Polynkin Alexander, Peyghambarian N, Mansuripur Masud
Optical Sciences Center, University of Arizona, 1630 East University Boulevard, Tucson, Arizona 85721, USA.
Opt Lett. 2005 Jun 1;30(11):1273-5. doi: 10.1364/ol.30.001273.
We report a simple optical sensing device capable of measuring the refractive index of liquids propagating in microfluidic channels. The sensor is based on a single-mode optical fiber that is tapered to submicrometer dimensions and immersed in a transparent curable soft polymer. A channel for liquid analyte is created in the immediate vicinity of the taper waist. Light propagating through the tapered section of the fiber extends into the channel, making the optical loss in the system sensitive to the refractive-index difference between the polymer and the liquid. The fabrication process and testing of the prototype sensing devices are described. The sensor can operate both as a highly responsive on-off device and in the continuous measurement mode, with an estimated accuracy of refractive-index measurement of approximately 5 x 10(-4).
我们报道了一种简单的光学传感装置,它能够测量在微流控通道中传播的液体的折射率。该传感器基于一根被拉锥至亚微米尺寸并浸入透明可固化软聚合物中的单模光纤。在拉锥腰部紧邻区域创建了一个用于液体分析物的通道。通过光纤锥形部分传播的光延伸到通道中,使得系统中的光学损耗对聚合物和液体之间的折射率差异敏感。描述了原型传感装置的制造工艺和测试情况。该传感器既可以作为高响应的开关装置运行,也可以在连续测量模式下工作,折射率测量的估计精度约为5×10⁻⁴ 。