Geant4 simulation of detection efficiency and self-attenuation effect of [beta] particles for radioxenon measurement using [beta]-[gamma] coincidence equipment

Measurement of radioxenon isotopes is one of the key components of the verification regime of the comprehensive nuclear-test-ban treaty. The [beta]-[gamma] coincidence technique is the most sensitive method for radioxenon isotopes detection. The self-attenuation effect of [beta]-particles is unavoid...

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Veröffentlicht in:Journal of radioanalytical and nuclear chemistry 2021-10, Vol.330 (1), p.325
Hauptverfasser: Li, Qi, Wang, Shilian, Zhao, Yungang, Fan, Yuanqing, Zhang, Xinjun, Zhang, Ruiqin, Jia, Huaimao
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Sprache:eng
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Zusammenfassung:Measurement of radioxenon isotopes is one of the key components of the verification regime of the comprehensive nuclear-test-ban treaty. The [beta]-[gamma] coincidence technique is the most sensitive method for radioxenon isotopes detection. The self-attenuation effect of [beta]-particles is unavoidable during [beta]-[gamma] coincidence measurement due to the presence of gas matrixes, such as stable xenon and other carrier gases, in the sample. In this study, the detection efficiencies of [beta]-particles for radioxenon isotopes in different volumes of different gas matrixes (xenon, nitrogen, and helium) were simulated using Geant4 and the self-attenuation effects were deduced accordingly. The method to correct for the self-attenuation effects was thereby provided.
ISSN:0236-5731
DOI:10.1007/s10967-021-07962-y