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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Thermoluminescence characteristics of Ge-doped optical fibers with different dimensions for radiation dosimetry
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Thermoluminescence characteristics of Ge-doped optical fibers with different dimensions for radiation dosimetry

机译:不同尺寸辐射剂量尺寸的GE掺杂光纤的热隆光特性

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Important thermoluminescence (TL) properties of five (5) different core sizes Ge-doped optical fibers have been studied to develop new TL material with better response. These are drawn from same preform applying different speed and tension during drawing phase to produce Ge-doped optical fibers with five (5) different core sizes. The results of the investigations are also compared with most commonly used standard TLD-100 chips (LiF:Mg,Ti) and commercial multimode Ge-doped optical fiber (Yangtze Optical Fiber, China). Scanning Electron Microscope (SEM) and EDX analysis of the fibers are also performed to map Ge distribution across the deposited region. Standard Gamma radiation source in Secondary Standard Dosimetry Lab (SSDL) was used for irradiation covering dose range from 1 Gy to 10 Gy. The essential dosimetric parameters that have been studied are TL linearity, reproducibility and fading. Prior to irradiation all samples similar to 0.5 cm length are annealed at temperature of 400 degrees C for 1 h period to standardize their sensitivities and background. Standard TLD-100 chips are also annealed for 1 h at 400 degrees C and subsequently 2 h at 100 degrees C to yield the highest sensitivity. TL responses of these fibers show linearity over a wide gamma radiation dose that is an important property for radiation dosimetry. Among all fibers used in this study, 100 mu m core diameter fiber provides highest response that is 2.6 times than that of smallest core (20 mu m core) optical fiber. These fiber-samples demonstrate better response than commercial multi-mode optical fiber and also provide low degree of fading about 20% over a period of fifteen days for gamma radiation. Effective atomic number (Z(eff)) is found in the range (13.25-13.69) which is higher than soft tissue (7.5) however within the range of human-bone (11.6-13.8). All the fibers can also be re-used several times as a detector after annealing. it properties of the Ge-doped optical fibers indicate promising applications in ionizing radiation dosimetry. (C) 2014 Elsevier Ltd. All rights reserved.
机译:研究了五(5)个不同核心尺寸Ge掺杂光纤的重要热致发光(TL)性能,以更好的反应开发新的TL材料。这些从相同的预成型件中施加不同的速度和张力在拉伸阶段,以产生具有五(5)个不同芯尺寸的GE掺杂光纤。研究结果也与最常用的标准TLD-100芯片(LIF:Mg,TI)和商业多模GE掺杂光纤(扬子光纤,中国)进行比较。还进行扫描电子显微镜(SEM)和纤维的EDX分析,以在沉积区域上映射GE分布。二次标准剂量测定实验室(SSDL)中的标准伽马辐射源用于照射覆盖剂量范围为1 GY至10GY。研究的基本剂量分析参数是TL线性,再现性和衰落。在照射之前,所有类似于0.5cm长度的样品在400℃的温度下退火1小时,以标准化其敏感性和背景。标准TLD-100芯片也在400℃下退火1小时,随后在100摄氏度下2小时以产生最高的灵敏度。这些纤维的T1响应显示出宽伽马辐射剂量的线性,这是辐射剂量测定的重要性质。在本研究中使用的所有纤维中,100亩M芯直径光纤提供的最高响应是比最小芯(20μm核心)光纤的最高响应。这些纤维样本表明了比商业多模光纤更好的响应,并且在γ辐射的15天内,在15天内提供约20%的低程度。有效的原子序数(Z(EFF))在高于软组织(7.5)的范围内(7.25-13.69),然而在人骨范围内(11.6-13.8)。在退火后,所有纤维也可以重新使用多次作为探测器。 GE掺杂光纤的IT性质表明在电离辐射剂量测定中的有希望的应用。 (c)2014年elestvier有限公司保留所有权利。

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