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Impact of detector efficiency and energy resolution on gamma-ray background rejection in mobile spectroscopy and imaging systems

机译:检测器效率和能量分辨率对移动光谱学和成像系统中伽马射线背景抑制的影响

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The presence of gamma-ray background significantly reduces detection sensitivity when searching for radioactive sources in the field, and the systematic variability in the background will limit the size and energy resolution of systems that can be used effectively. An extensive survey of the background was performed using both sodium iodide and high-purity germanium. By using a bivariate negative binomial model for the measured counts, these measurements can be resampled to simulate the performance of a detector array of arbitrary size and resolution. The response of the system as it moved past a stationary source was modeled for spectroscopic and coded aperture imaging algorithms and used for source injection into the background. The performance of both techniques is shown for various sizes and resolutions, as well as the relative performance for sodium iodide and germanium. It was found that at smaller detector sizes or better energy resolution, spectroscopy has higher detection sensitivity than imaging, while imaging is better suited to larger or poorer resolution detectors.
机译:伽马射线背景的存在大大降低了在野外寻找放射性源时的检测灵敏度,并且背景中的系统变异性将限制可以有效使用的系统的大小和能量分辨率。使用碘化钠和高纯锗对背景进行了广泛的调查。通过将双变量负二项式模型用于测量计数,可以对这些测量值重新采样以模拟任意大小和分辨率的检测器阵列的性能。对系统经过固定源时的响应进行建模,以进行光谱和编码孔径成像算法,并用于将源注入背景。显示了两种技术在各种尺寸和分辨率下的性能,以及碘化钠和锗的相对性能。发现在较小的探测器尺寸或更好的能量分辨率下,光谱学比成像具有更高的探测灵敏度,而成像更适合于更大或更差分辨率的探测器。

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