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Evaluation of radiation detector systems for mammography x-ray units

机译:乳腺X射线摄影机辐射探测器系统的评估

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摘要

Nine polycrystalline (Detector and Optical Grade) and Single Crystal CVD diamond detectors were characterised in terms of their defects and impurities with the specific aim to provide the much needed tool for selecting materials suitable for use in radiation detectors and in spectroscopy when exposed to alpha particles radiation or mammographic X-rays. The effectiveness of electron spin resonance (ESR), ultra-violet (UV) absorption, Raman broadening and thermo-luminescence (TL) emission as tools for performance evaluation were analyzed. The study has shown that defects (e.g. grain boundaries) and impurities (e.g. single substitution nitrogen concentration) played a role in the performance of CVD diamond wafers when used as dosimeter or spectrometer. In particular the observed higher values of single substitutional nitrogen concentrations, higher UV absorption and Raman broadening but lower TL emission values in the Optical Grade CVD diamond wafers were associated with their improved performance as detectors of alpha particles. The lower ESR, the lower UV absorption, higher TL emission values and lower Raman broadening were related to the better performance of both the Detector and Single Crystal CVD diamond wafers when used for alpha spectroscopy.udAn adopted and extended method developed for the correction of the ‘as accumulated’ spectra that takes into account the detector’s efficiency gave rise to an X-ray mammography spectrum that is independent of the detector type. This was used to justify the use the Monte Carlo simulated spectrum to evaluate the comparative responses of ofudivudpure diamond to that of the CVD diamonds wafers when exposed to simulated and actual X-ray exposures respectively. The research has provided an evaluation technique for selecting detectors suitable for different applications. The research furthermore, suggests that for the detection of X-ray photons, using a Detector Grade CVD diamond wafer is best suited for the task but generally the most consistent radiation detector material is the Single Crystal CVD wafer.
机译:九种多晶(探测器和光学级)和单晶CVD金刚石探测器的特征在于其缺陷和杂质,旨在为选择暴露于α粒子的辐射探测器和光谱学中使用的材料提供急需的工具。辐射或乳房X射线检查。分析了电子自旋共振(ESR),紫外线(UV)吸收,拉曼展宽和热发光(TL)发射作为性能评估工具的有效性。研究表明,当用作剂量计或光谱仪时,缺陷(例如晶界)和杂质(例如单取代氮浓度)在CVD金刚石晶片的性能中起作用。尤其是,在光学级CVD金刚石晶片中观察到的较高的单个取代氮浓度值,较高的UV吸收率和拉曼展宽但较低的TL发射值与其作为α粒子检测器的性能提高有关。当用于α光谱分析时,较低的ESR,较低的UV吸收,较高的TL发射值和较低的拉曼展宽与检测器和单晶CVD金刚石晶片的更好性能有关。考虑了探测器效率的“累积”光谱产生了与探测器类型无关的X射线乳房X线照相光谱。这被用来证明使用蒙特卡洛模拟光谱来评估分别在模拟和实际X射线照射下udiv udpure金刚石与CVD金刚石晶片的比较响应。该研究为选择适合不同应用的检测器提供了一种评估技术。进一步的研究表明,对于X射线光子的检测,使用检测器级CVD金刚石晶片最适合该任务,但通常最一致的辐射检测器材料是单晶CVD晶片。

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    Mavunda Risimati Dazmen;

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  • 年度 2009
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