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A Highly-Sensitive Optofluidics-based Refractometer in a Young Interferometer Design

机译:基于高度敏感的Optofluidics折射仪,在年轻干涉仪设计中

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This paper proposes a highly sensitive and compact optofluidics-based refractometer. Our key idea is based on the use of a two-channel microfluidic chip in a free-space Young interferometer structure that provides an inherent advantage in cancelling the unwanted optical phase noise induced from the surrounding environment during optical beam propagation.By using a 655-nm monochromatic light that travels in free space for 57.5 cm and a microfluidic chip designed to have two fluidic channels in parallel with a distance between channels of 900 μm and a channel depth of 100 μm, our simulation indicates that analysis of the movement of the interference fringe offers a sensitivity of better than 1.31×10~(-4)in measuring the change of the refractive index. A better than thousand-fold improvement can also be accomplished by investigating the amplitude change of the interference fringe via a > 10-bit digitalization. Our experiment in analyzing the change of the refractive index of the sucrose solution will be discussed. Polarization insensitivity and simplicity in design and implementation are also additional key advantages.
机译:本文提出了一种高度敏感和紧凑的替代专用折射仪。我们的关键思想基于在自由空间幼小干涉仪结构中使用双通道微流体芯片,该结构在光束传播期间取消从周围环境引起的不需要的光学相位噪声。使用655- NM单色光在自由空间中行进57.5cm,微流体芯片设计成具有两个与900μm的通道之间的距离平行的流体通道,我们的模拟表明干扰运动的分析在测量折射率的变化时,条纹提供优于1.31×10〜(-4)的灵敏度。还可以通过通过> 10位数字化研究干涉条纹的幅度变化来实现更好的千倍的改进。我们在分析蔗糖溶液折射率变化时的实验将讨论。设计和实施中的极化不敏感性和简单性也是额外的主要优点。

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