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FNTD radiation dosimetry system enhanced with dual-color wide-field imaging

机译:FNTD辐射剂量测定系统增强了双色宽视场成像

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At high neutron and photon doses Fluorescent Nuclear Track Detectors (FNTDs) require operation in analog mode and the measurement results depend on individual crystal color center concentration (coloration). We describe a new method for radiation dosimetry using FNTDs, which includes non-destructive, automatic sensitivity calibration for each individual FNTD. in the method presented, confocal laser scanning fluorescent imaging of FNTDs is combined with dual-color wide field imaging of the FNTD. The calibration is achieved by measuring the color center concentration in the detector through fluorescence imaging and reducing the effect of diffuse reflection on the lapped surface of the FNTD by imaging with infra-red (IR) light. The dual-color imaging of FNTDs is shown to provide a good estimation of the detector sensitivity at high doses of photons and neutrons, where conventional track counting is impeded by track overlap. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在高中子和光子剂量下,荧光核径迹检测器(FNTD)需要以模拟模式运行,并且测量结果取决于各个晶体的色心浓度(色度)。我们描述了一种使用FNTD进行辐射剂量测定的新方法,该方法包括针对每个FNTD的无损自动灵敏度校准。在提出的方法中,将FNTD的共聚焦激光扫描荧光成像与FNTD的双色宽视场成像相结合。通过荧光成像测量检测器中的色心浓度,并通过红外(IR)成像减少FNTD重叠表面上的漫反射影响,从而实现校准。显示了FNTD的双色成像,可以很好地估计在高剂量的光子和中子时的检测器灵敏度,而传统的轨道计数受轨道重叠的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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