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Performance of Ge-Doped Optical Fiber as a Thermoluminescent Dosimeter

机译:掺锗光纤作为热释光剂量计的性能

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摘要

We have investigated the thermoluminescent response of three Germanium-doped silica-based optical fibers obtained by varying the drawing parameters from a unique preform. We compared under X-ray irradiation, their dosimetric properties to those of two widely used commercial dosimeters based on different technologies. Then, we investigated the potential of these optical fibers to monitor gamma rays at different doses and dose-rates, and to different fluences of particles (0.8 and 14 MeV neutrons and 63 MeV protons). Our results show that the thermoluminescence response of the Ge-doped optical fibers depends linearly on the direct ionizing dose (gamma-, X-rays) or on the indirect ionizing dose (protons, neutrons). As a consequence, this class of fibers is an excellent candidate for passive dosimetry in various fields from medical applications to high-energy physics.
机译:我们研究了通过改变来自独特预成型件的拉伸参数而获得的三种掺锗的二氧化硅基光纤的热发光响应。我们比较了在X射线照射下它们的剂量特性与基于不同技术的两种广泛使用的商业剂量计的剂量特性。然后,我们研究了这些光纤监视不同剂量和剂量率以及不同通量粒子(0.8和14 MeV中子和63 MeV质子)的伽马射线的潜力。我们的结果表明,掺Ge光纤的热致发光响应线性依赖于直接电离剂量(γ射线,X射线)或间接电离剂量(质子,中子)。因此,这类纤维是从医学应用到高能物理等各个领域中被动剂量测定的极佳候选者。

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