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Study of Wavelength-Dependent Bend Loss in Step-Index Multimode Fiberoptic Microbend Displacement Sensor

机译:阶梯式多模光纤微管位移传感器中波长依赖性弯曲损失研究

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摘要

In this article, the wavelength dependence of bend loss in a step-index multimode optical fiber (100 μm core diameter; fused silica) was investigated for fiber bend radii ranging between 2.0 and 4.5 mm using six excitation wavelengths, namely, 337.1, 470, 590, 632.8, 750 and 810 nm. The results obtained from fitting the bend loss measurements to Kao's model and utilizing MATLAB indicate that bend loss is wavelength dependent and transmission loss in multimode optical fibers increases with the decrease in the fiber bend radius. Furthermore, the response of a microbend fiber optic displacement sensor was characterized at 337.1, 470, 632.8, 750 and 810 nm. Measurements obtained from the microbend sensor indicate that the sensor output power is linear with the applied displacement and the sensor output is wavelength dependent.
机译:在本文中,研究了步进指数多模光纤(100μm芯直径;熔融二氧化硅)的弯曲损耗的波长依赖性,用于使用六个激发波长为2.0和4.5mm之间的光纤弯曲半径,即337.1,470, 590,632.8,750和810nm。 从拟合弯曲损耗测量到Kao模型和利用MATLAB获得的结果表明弯曲损耗是波长依赖性,并且多模光纤中的传输损耗随比光纤弯曲半径的减少而增加。 此外,微型光纤位移传感器的响应在337.1,470,632.8,750和810nm处的特征在于。 从微型传感器获得的测量表明传感器输出功率与施加的位移线性线性,传感器输出是波长相关的。

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