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首页> 外文期刊>IEEE Transactions on Nuclear Science >Dose Rate Effect Comparison on the Radiation Response of Type I Fiber Bragg Gratings Written With UV cw Laser
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Dose Rate Effect Comparison on the Radiation Response of Type I Fiber Bragg Gratings Written With UV cw Laser

机译:紫外连续激光对I型光纤布拉格光栅辐射响应的剂量率效应比较

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Fiber Bragg grating (FBG) based sensors are one of the most studied optical fiber sensors in harsh environments. The effects induced on gratings by the radiation depend on the gratings' properties and on the irradiation conditions, such as temperature, dose and dose-rate. Only few studies dealt with the dose-rate dependence of the response of some particular gratings and observed that the higher is the dose-rate, the larger is the radiation-induced Bragg wavelength shift (RI-BWS) at a same accumulated dose. In this work, we verify this behavior in a larger dose-rate range, from 5 to 50 Gy/s, for different grating types and from our results we find an empirical law that describes the RI-BWS. Moreover, a comparison between the radiation-induced refractive index variation values calculated from the RI-BWS and from attenuation measurements performed at the same irradiation conditions allows us to propose a candidate for the RI-BWS origin: the Ge(1) defect.
机译:基于光纤布拉格光栅(FBG)的传感器是在恶劣环境下研究最多的光纤传感器之一。辐射对光栅的影响取决于光栅的性质和辐照条件,例如温度,剂量和剂量率。只有很少的研究处理某些特定光栅响应的剂量率相关性,并且观察到剂量率越高,在相同累积剂量下辐射引起的布拉格波长偏移(RI-BWS)越大。在这项工作中,我们针对不同的光栅类型在5至50 Gy / s的较大剂量率范围内验证了这种行为,并从我们的结果中发现了描述RI-BWS的经验定律。此外,从RI-BWS计算出的辐射诱导折射率变化值与在相同辐照条件下进行的衰减测量值之间的比较,使我们能够提出RI-BWS起源的候选物Ge(1)缺陷。

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