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Radiation hardness of fiber optic sensors for monitoring and remote handling a

机译:用于监控和远程处理的光纤传感器的辐射硬度

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Abstract: We report on our irradiation experiments on different types of fiber-optic sensors, including three types of commercially available temperature sensors, a multimode extrinsic Fabry-Perot cavity strain sensor and fiber Bragg- gratings. For the temperature sensors, results show that gamma radiation does not interfere with the basic sensing mechanism and that the most critical component turns out to be the optical fiber itself. Semiconductor absorption temperature sensor showed no degradation up to total doses of 250 kGy, whereas the specifications of Fabry-Perot type sensor and fluorescence temperature sensors were already dramatically influenced below the kGy-level. Replacing the optical fiber by a more radiation resistant version allowed to increase the radiation hardness of the fluorescence sensors system by orders of magnitude. The use of fiber- optic sensors in the presence of neutron radiation remains compromised. Similar conclusions are valid for the Fabry- Perot type fiber-optic strain sensors. We finally show that the Bragg-grating resonance wavelength can shift with radiation dose, but that the temperature sensitivity remains unaltered. !39
机译:摘要:我们在不同类型的光纤传感器上报告了我们的辐射实验,包括三种类型的市售温度传感器,多模外在的法布里 - 珀罗腔应变传感器和纤维吹露。对于温度传感器,结果表明,伽马辐射不会干扰基本传感机制,并且最关键的部件变成光纤本身。半导体吸收温度传感器显示出直到250 kgy的总剂量没有降解,而制造型传感器和荧光温度传感器的规格已经显着影响了低于kgy级。通过更多的辐射抗性版本更换光纤,允许通过级别增加荧光传感器系统的辐射硬度。在中子辐射存在下使用光纤传感器仍然受损。类似的结论对于Fabry-Perot型光纤应变传感器是有效的。我们最终表明布拉格 - 光栅共振波长可以用辐射剂量转化,但温度敏感性保持不变。 !39.

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