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Utilising a loop structure to allow a microfiber coupler with larger taper diameters to be used for sensing

机译:利用环形结构,可将具有较大锥度的超细纤维耦合器用于传感

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This paper examines a technique that utilizes a Sagnac loop with a microfiber coupler (MFC) as a coupler which allows the MFC to operate effectively as a sensor but with larger than normal tapered fiber diameters. The proposed structure is found to be suitable for temperature and refractive index (RI) sensing. It is shown that a variation in the surrounding of the MFC RI results in a shift of the output spectrum, while a temperature variation leads to changes in the intensity of the interference dips. A decrease in the waist diameter of the MFC results in an increase in the sensitivity to temperature. For MFC structures based on a 5.6 μm and a 3 μm fiber waist diameter, the minimum transmission power level of a selected spectral dip decreases by 1.7 dB and 5.03 dB respectively, as the temperature changes from 18 °C to 44 °C. A change in the surrounding RI from 1.334 to 1.395 results in the spectral redshift of 8 nm using a 5.6 μm fiber waist diameter. By functionalizing the surface of the MFC with various materials, the structure could potentially be used for sensing of other parameters.
机译:本文研究了一种利用Sagnac环和超细纤维耦合器(MFC)作为耦合器的技术,该技术使MFC可以有效地用作传感器,但具有比正常的锥形纤维直径更大的直径。发现所提出的结构适合于温度和折射率(RI)感测。结果表明,MFC RI周围环境的变化会导致输出频谱的偏移,而温度变化会导致干扰骤降强度的变化。 MFC的腰部直径的减小导致对温度的敏感性增加。对于基于5.6μm和3μm纤维腰围直径的MFC结构,随着温度从18°C变为44°C,所选频谱下陷的最小传输功率水平分别降低了1.7 dB和5.03 dB。使用5.6μm的纤维腰围直径,周围RI从1.334变为1.395会导致8 nm的光谱红移。通过用各种材料对MFC的表面进行功能化,该结构可以潜在地用于感测其他参数。

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