Rizzolo S, Marin E, Cannas M, Boukenter A, Ouerdane Y, Périsse J, Macé J-R, Bauer S, Marcandella C, Paillet P, Girard S
Opt Lett. 2015 Oct 15;40(20):4571-4. doi: 10.1364/OL.40.004571.
We investigate the radiation effects on germanosilicate optical fiber acting as the sensing element of optical frequency domain reflectometry devices. Thanks to a new setup permitting to control temperature during irradiation, we evaluate the changes induced by 10 keV x rays on their Rayleigh response up to 1 MGy in a temperature range from -40°C up to 75°C. Irradiation at fixed temperature points out that its measure is reliable during both irradiation and the recovery process. Mixed temperature and radiation measurements show that changing irradiation temperature leads to an error in distributed measurements that depends on the calibration procedure. These results demonstrate that Rayleigh-based optical fiber sensors are very promising for integration in harsh environments.
我们研究了辐射对作为光频域反射测量设备传感元件的锗硅酸盐光纤的影响。借助一种新的可在辐照期间控制温度的装置,我们评估了在-40°C至75°C的温度范围内,10 keV X射线在高达1 MGy剂量下对其瑞利响应所引起的变化。在固定温度下的辐照表明,其测量在辐照和恢复过程中都是可靠的。温度与辐射的混合测量表明,改变辐照温度会导致分布式测量中出现误差,该误差取决于校准程序。这些结果表明,基于瑞利的光纤传感器在恶劣环境中的集成方面非常有前景。