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Miniaturized Optical Viscosity Sensor based on a Laser-induced Capillary Wave

机译:基于激光诱导的毛细波的小型化光学粘度传感器

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A novel micro optical viscosity sensor (MOVS), by laser-induced capillary wave method enabling us non-contact, short-time (several hundreds of nano seconds), and small sample volume (several tens of micro litters) in situ / in vivo measurement, is reported in this paper. The microfabricated MOVS chip consists of two deep trenches holding photonic crystal fibers for excitation laser, and two shallow trenches holding the lensed-fibers for probing laser. The optical interference fringe excited by two pulsed laser beams heats the sample surface, and the temporal behavior of surface geometry is detected as a first-order diffracted beam, which contains the information of liquid properties (viscosity and surface tension). The preliminary measurements using distilled water and sulfuric acid with dye of carbon black are demonstrated. The high-speed damped oscillation signals are successfully detected by MOVS.
机译:一种新型微光学粘度传感器(MOVS),通过激光诱导的毛细管波方法,使我们不接触,短时间(数百个纳米秒),以及小样品体积(几十微窝)原位/在体内在本文中报道了测量。微制造的MOV芯片由两个深沟槽组成,该深沟保持用于激发激光的光子晶体纤维,以及握住用于探测激光的透镜纤维的两个浅沟槽。由两个脉冲激光束激发的光学干涉条纹加热样品表面,并且表面几何形状的时间行为被检测为一阶衍射光束,其包含液体性质(粘度和表面张力)的信息。证明了使用蒸馏水和硫酸与染料炭黑的初步测量。通过MOV成功检测到高速阻尼振荡信号。

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