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Technical Paper

A Copper Shield for the Reduction of X-γ True Coincidence Summing in Gamma-ray Spectrometry

원문정보

Jong-In Byun

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초록

영어

Background: Gamma-ray detectors having a thin window of a material with low atomic number can increase the true coincidence summing effects for radionuclides emitting X-rays or gamma-rays. This effect can make efficiency calibration or spectrum analysis more complicated. In this study, a Cu shield was tested as an X-ray filter to neglect the true coincidence summing effect by X-rays and gamma-rays in gamma-ray spectrometry, in order to simplify gamma- ray energy spectrum analysis. Materials and Methods: A Cu shield was designed and applied to an n-type high-purity germanium detector having an X-γ summing effect during efficiency calibration. This was tested using a commercial, certified mixed gamma-ray source. The feasibility of a Cu shield was evaluated by comparing efficiency calibration results with and without the shield. Results and Discussion: In this study, the thickness of a Cu shield needed to avoid true coincidence summing effects due to X-γ was tested and determined to be 1 mm, considering the detection efficiency desired for higher energy. As a result, the accuracy of the detection efficiency calibration was improved by more than 13% by reducing X-γ summing. Conclusion: The X-γ summing effect should be considered, along with γ-γ summing, when a detection efficiency calibration is implemented and appropriate shielding material can be useful for simplifying analysis of the gamma-ray energy spectra.

목차

ABSTRACT
Introduction
Materials and Methods
Results and Discussion
Conclusion
References

저자정보

  • Jong-In Byun Korea Institute of Nuclear Safety, Daejeon, Korea

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자료제공 : 네이버학술정보

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