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Investigation of Temperature Sensitivity of a Polymer-Overlaid Microfiber Mach-Zehnder Interferometer

机译:聚合物覆盖超细纤维马赫曾德尔干涉仪的温度敏感性研究

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摘要

The temperature sensitivity of the free spectral range (FSR) for a polymer-overlaid microfiber Mach-Zehnder interferometer (MZI) is investigated both theoretically and experimentally. The waist diameter of the optical microfiber can be controlled to alter the thermal expansion and optic properties of the polymer-coated MZI. Inserting an optical microfiber with a strong evanescent field into the MZI, a low index polymer with high thermal characteristics is deposited on the surface of the microfibers to realize a polymer-overlaid microfiber MZI. It was found that the thermal expansion factor in the proposed MZI plays an important role in the temperature sensitivity of the FSR. The temperature sensitivity of the polymer-overlaid microfiber MZI is improved, which is measured to be −8.29 nm/°C at 25 °C. The optical transmission spectrum of the polymer-overlaid microfiber MZI is converted to the spatial frequency spectrum via fast Fourier transform. The temperature sensitivity of the spatial frequency in the proposed polymer-overlaid MZI is estimated to be 18.31 pm−1 °C−1, which is 17 times higher than that of the microfiber MZI without polymer coating (1.04 pm−1 °C−1).
机译:理论上和实验上都研究了聚合物覆盖的微纤维马赫曾德尔干涉仪(MZI)的自由光谱范围(FSR)的温度敏感性。可以控制光学微纤维的腰部直径,以改变涂有聚合物的MZI的热膨胀和光学性能。将具有强消逝场的光学微纤维插入MZI,将具有高热特性的低折射率聚合物沉积在微纤维的表面上,以实现覆盖聚合物的微纤维MZI。发现所提出的MZI中的热膨胀系数在FSR的温度敏感性中起重要作用。聚合物覆盖的超细纤维MZI的温度敏感性得到改善,在25°C下测得的温度敏感性为-8.29 nm /°C。聚合物覆盖的超细纤维MZI的光透射光谱通过快速傅立叶变换转换为空间频谱。拟议的聚合物覆盖的MZI中空间频率的温度敏感性估计为18.31 pm -1 °C -1 ,这是聚合物的MZI的17倍。没有聚合物涂层的超细纤维MZI(1.04 pm -1 °C -1 )。

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