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Temperature Sensor Based on Highly Germanium-doped Fiber with Rounded Tip

机译:基于高度锗掺杂纤维的温度传感器,圆形尖端

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A compact temperature sensor with highly germanium-doped fiber (Ge-fiber) is experimentally demonstrated. It is based on an in-line Michelson interferometer, which is constructed by splicing a 1mm-long, 75 mol.% GeO_2-doped fiber to a single mode fiber (SMF) and fusing the tip into rounded shape. Since the differential refractive index of the Ge-fiber is much higher than that of normal fibers, length of the proposed sensor probe has been greatly reduced. The rounded surface provides as a concave mirror to enhance the reflection, thus leads to a high extinction ratio to the interference fringes. By monitoring wavelength shift of the reflection spectrum, temperature measurement was realized with a high sensitivity of 89.5 pm/°C, which is much higher than normal fiber based MI sensors owing to higher thermo-optic coefficient of the Ge-fiber. The advantages of the sensor are its compact size, facile fabrication and high sensitivity, which make it a potential candidate in point measurement of temperature.
机译:实验证明了具有高度锗掺杂光纤(GE-FIBED)的紧凑型温度传感器。它基于在线迈克尔逊干涉仪,该干涉仪通过拼接1mm-long,75摩尔。%Geo_2掺杂的纤维,并将尖端熔化成圆形的形状。由于GE光纤的差分折射率远高于普通纤维的折射率,因此提出的传感器探针的长度大大降低。圆形表面提供凹面镜以增强反射,从而导致与干涉条纹的高消光比。通过监测反射光谱的波长偏移,实现了89.5μm/°C的高灵敏度的温度测量,这远远高于GE纤维的热视光系数的正常光纤的MI传感器。传感器的优点是其紧凑的尺寸,容易的制造和高灵敏度,使其成为温度点测量的潜在候选者。

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