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Radiation-Resistant Optical Fiber Fabry-Perot Interferometer Used for High-Temperature Sensing

机译:用于高温感测的辐射光纤Fabry-Perot干涉仪

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摘要

An optical fiber Fabry-Perot interferometer based on sapphire wafer is designed and fabricated for high-temperature sensing under Co-60 gamma irradiation. The sensing probe is composed by a thin sapphire wafer and a pure silica multi-mode fiber. In the experiment, the interferometer is exposed under the Co-60 gamma irradiation with different irradiation time and absorbed dose rate. The irradiated optical fiber sensor underwent three temperature cycle tests up to 800 degrees C and demonstrated excellent sensing performance at high temperature. The whole sensing system has the capability to survive in high temperature environment that surpasses 800 degrees C. The interferometer can achieve the high sensitivity of 29.9 pm/degrees C at the wavelength around 1340 nm when the temperature is 800 degrees C. The proposed sensor and sensing system has great potential to be applied under strong irradiation and high temperature.
机译:基于蓝宝石晶片的光纤法布里 - 珀罗干涉仪设计和制造,用于在CO-60γ辐射下进行高温感测。传感探针由薄的蓝宝石晶片和纯二氧化硅多模纤维组成。在实验中,干涉仪在CO-60γ辐射下暴露,具有不同的照射时间和吸收剂量率。辐照光纤传感器在高达800℃的温度循环测试中进行了三个温度循环测试,并在高温下显示出优异的感测性能。整个传感系统具有在高温环境中存活的能力,其超出800℃的高温环境。当温度为800℃时,干涉仪可以在1340nm的波长下实现29.9μm/℃的高灵敏度。所提出的传感器和感应系统具有很大的潜力,可以在强烈的照射和高温下应用。

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