Gamma-ray spectrometry data collection and reduction by simple computing systems.

Atomic energy review Pub Date : 1975-12-01
J Op de Beeck
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Abstract

The review summarizes the present state of the involvement of relatively small computing devices in the collection and processing of gamma-ray spectrum data. An economic and utilitarian point of view has been chosen with regard to data collection in order to arrive at practically valuable conclusions in terms of feasibility of possible configurations with respect to their eventual application. A unified point of view has been adopted with regard to data processing by developing an information theoretical approach on a more or less intuitive level in an attempt to remove the largest part of the virtual disparity between the several processing methods described in the literature. A synoptical introduction to the most important mathematical methods has been incorporated, together with a detailed theoretical description of the concept gamma-ray spectrum. In accordance with modern requirements, the discussions are mainly oriented towards high-resolution semiconductor detector-type spectra. The critical evaluation of the processing methods reviewed is done with respect to a set of predefined criteria. Smoothing, peak detection, peak intensity determination, overlapping peak resolving and detection and upper limits are discussed in great detail. A preferred spectrum analysis method combining powerful data reduction properties with extreme simplicity and speed of operation is suggested. The general discussion is heavily oriented towards activation analysis application, but other disciplines making use of gamma-ray spectrometry will find the material presented equally useful. Final conclusions are given pointing to future developments and shifting their centre of gravity towards improving the quality of the measurements rather than expanding the use of tedious and sophisticated mathematical techniques requiring the limits of available computational power.

用简单的计算系统收集和还原伽马射线能谱数据。
本文综述了目前使用相对较小的计算设备收集和处理伽马射线能谱数据的情况。在数据收集方面选择了经济和实用的观点,以便就可能的配置在最终应用方面的可行性得出实际有价值的结论。通过在或多或少直观的层面上发展一种信息理论方法,在数据处理方面采用了统一的观点,试图消除文献中描述的几种处理方法之间的大部分虚拟差异。对最重要的数学方法作了概括性的介绍,并对伽玛射线谱的概念作了详细的理论描述。根据现代要求,讨论主要面向高分辨率半导体探测器型光谱。审查的处理方法的关键评估是根据一组预定义的标准完成的。对平滑、峰检测、峰强度确定、重叠峰分辨、检测和上限进行了详细讨论。提出了一种将强大的数据约简性能与极其简单和快速的操作相结合的首选频谱分析方法。一般的讨论主要是针对活化分析的应用,但其他学科利用伽马射线能谱法将发现所提出的材料同样有用。最后的结论指出了未来的发展,并将其重心转向提高测量的质量,而不是扩大使用繁琐而复杂的数学技术,这些技术需要有限的可用计算能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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