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Ionizing Radiation Detectors Based on Ge-Doped Optical Fibers Inserted in Resonant Cavities

机译:基于插入谐振腔中的掺锗光纤的电离辐射探测器

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摘要

The measurement of ionizing radiation (IR) is a crucial issue in different areas of interest, from environmental safety and industrial monitoring to aerospace and medicine. Optical fiber sensors have recently proven good candidates as radiation dosimeters. Here we investigate the effect of IR on germanosilicate optical fibers. A piece of Ge-doped fiber enclosed between two fiber Bragg gratings (FBGs) is irradiated with gamma radiation generated by a 6 MV medical linear accelerator. With respect to other FBG-based IR dosimeters, here the sensor is only the bare fiber without any special internal structure. A near infrared laser is frequency locked to the cavity modes for high resolution measurement of radiation induced effects on the fiber optical parameters. In particular, we observe a variation of the fiber thermo-optic response with the radiation dose delivered, as expected from the interaction with Ge defect centers, and demonstrate a detection limit of 360 mGy. This method can have an impact in those contexts where low radiation doses have to be measured both in small volumes or over large areas, such as radiation therapy and radiation protection, while bare optical fibers are cheap and disposable.
机译:从环境安全和工业监控到航空航天和医学,电离辐射(IR)的测量是各个关注领域中的关键问题。光纤传感器最近被证明是辐射剂量计的良好候选者。在这里,我们研究了红外对锗硅酸盐光纤的影响。 6 MV医用线性加速器产生的伽马射线辐照封装在两个光纤布拉格光栅(FBG)之间的掺Ge光纤。相对于其他基于FBG的红外剂量计,此处的传感器只是裸露的光纤,没有任何特殊的内部结构。将近红外激光器锁频到腔模,以高分辨率测量辐射对光纤光学参数的影响。特别是,我们观察到了光纤热光响应随所传递的辐射剂量的变化,这是与Ge缺陷中心相互作用所预期的,并证明了360 mGy的检测限。这种方法在必须小剂量或大面积测量低辐射剂量的情况下会产生影响,例如辐射疗法和辐射防护,而裸露的光纤便宜且可抛弃。

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