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Spectral resolution evaluation by MCNP simulation for airborne alpha detection system with a collimator

机译:用准直器的空气α检测系统MCNP模拟光谱分辨率评估

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摘要

In this study, an airborne alpha detection system, which consists of a passivated implanted planar silicon (PIPS) detector and an air filter, was developed. A collimator applied to the alpha detection system showed an enhancement in resolution and a degradation in detection efficiency. The resolution and detection efficiency were compared and analyzed to evaluate the performance of the collimator. Thus, the resolution was found to be more important than the efficiency as a determining factor of the detection system performance, from the viewpoint of radionuclide identification. The performance was evaluated on three properties of the collimator: hole shape, hole length, and the ratio between the hole and frame pitches. From the hole shape performance evaluation, a hexagonal collimator showed the highest resolution. Further, the collimator with a hole pitch of 14 mm was found to have the highest resolution while that with a frame pitch of 4–6 mm (i.e., 1.2–1.4 times longer than the hole pitch) showed the highest resolution.
机译:在本研究中,开发了由钝化植入平面硅(PIPS)检测器和空气过滤器组成的空气α检测系统。施加到α检测系统的准直器在分辨率和检测效率的降解中显示出增强。比较分辨率和检测效率并分析以评估准直器的性能。因此,从放射性核素识别的观点来看,发现分辨率比检测系统性能的确定因素更重要。在准直器的三个性能下评估性能:孔形,孔长度和孔和框架间距之间的比率。从孔形状的性能评估,六边形准直器显示出最高分辨率。此外,发现具有14mm的孔间距的准直器具有最高分辨率,而具有4-6mm的框架间距(即,比孔间距长1.2-1.4倍)显示出最高分辨率。

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