Published January 2021 | Version v1
Journal article

2D peak fitting for the analysis of radioxenon beta gamma spectra

  • 1. United States Air Force Academy, USAFA, CO (United States). Department of Physics
  • 2. United States Air Force Academy, USAFA, CO (United States). Thienbao Consulting LLC in Coordination with Department of Physics

Description

Atmospheric traces of radioactive xenon, in particular 131mXe, 133Xe, 133mXe and 135Xe, can provide 'smoking gun' evidence to classify underground nuclear fission reactions. Current software used to quantify isomer concentrations relies on a Region of Interest (ROI) method to sort beta-gamma coincidence counts. This experiences errors when classifying nuclides, especially with metastable nuclides, due to the difficulty of deconvoluting overlapping ROIs and accounting for shifts in detector calibration over time. To address this uncertainty, our technique mathematically models the distinctive peaks in an isomer's beta-gamma spectrum. The function representations are then fitted to measured spectra to determine the concentrations of the primary isomers in the sample. From this proof-of-concept, we hope to create a more precise and accurate system to detect nuclear fission reactions. (author)

Additional details

Publishing Information

Journal Title
Journal of Radioanalytical and Nuclear Chemistry
Journal Volume
327
Journal Issue
1
Journal Page Range
p. 445-456
ISSN
0236-5731
CODEN
JRNCDM

Optional Information

Notes
15 refs.