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Highly Sensitive Liquid Core Temperature Sensor Based on Multimode Interference Effects

机译:基于多模干扰效应的高灵敏度液芯温度传感器

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摘要

A novel fiber optic temperature sensor based on a liquid-core multimode interference device is demonstrated. The advantage of such structure is that the thermo-optic coefficient (TOC) of the liquid is at least one order of magnitude larger than that of silica and this, combined with the fact that the TOC of silica and the liquid have opposite signs, provides a liquid-core multimode fiber (MMF) highly sensitive to temperature. Since the refractive index of the liquid can be easily modified, this allows us to control the modal properties of the liquid-core MMF at will and the sensor sensitivity can be easily tuned by selecting the refractive index of the liquid in the core of the device. The maximum sensitivity measured in our experiments is 20 nm/°C in the low-temperature regime up to 60 °C. To the best of our knowledge, to date, this is the largest sensitivity reported for fiber-based MMI temperature sensors.
机译:提出了一种基于液芯多模干涉装置的新型光纤温度传感器。这种结构的优点在于,液体的热光系数(TOC)比二氧化硅大至少一个数量级,并且,加上二氧化硅和液体的TOC具有相反符号的事实,提供了对温度高度敏感的液芯多模光纤(MMF)。由于可以轻松修改液体的折射率,因此我们可以随意控制液芯MMF的模态特性,并且可以通过选择设备核心中液体的折射率来轻松调整传感器的灵敏度。 。在高达60°C的低温条件下,我们在实验中测得的最大灵敏度为20 nm /°C。据我们所知,迄今为止,这是基于光纤的MMI温度传感器的最大灵敏度。

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