Published June 15, 1984 | Version v1
Journal article

Compton suppression gamma counting

  • 1. Geological Survey, Denver, CO (USA)

Description

Past research has shown that anti-coincidence shielded Ge(Li) spectrometers enhances the signal-to-background ratios for gamma-photopeaks, which are situated on high Compton backgrounds. Ordinarily, an anti- or non-coincidence spectrum (A) and a coincidence spectrum (C) are collected simultaneously with these systems. To be useful in neutron activation analysis (NAA), the fractions of the photopeak counts routed to the two spectra must be constant from sample to sample or variations must be corrected quantitatively. Most Compton suppression counting has been done at low count rates, but in NAA applications, count rates may be much higher. To operate over the wider dynamic range, the effect of count rate on the ratio of the photopeak counts in the two spectra (A/C) was studied. It was found that as the count rate increases, A/C decreases for gammas not coincident with other gammas from the same decay. For gammas coincident with other gammas, A/C increases to a maximum and then decreases. These results suggest that calibration curves are required to correct photopeak areas so quantitative data can be obtained at higher count rates. (orig.)

Additional details

Additional titles

Subtitle (English)
The effect of count rate

Publishing Information

Journal Title
Nucl. Instrum. Methods Phys. Res., Sect. A
Journal Volume
223
Journal Issue
2/3
Series
CODEN: NIMRD.;Nucl. Instrum. Methods Phys. Res., Sect. A.
Journal Page Range
416-419
ISSN
0167-5087

Conference

Title
2. seminar on alpha-particle spectrometry and low-level measurement.
Dates
10-13 May 1983.
Place
Harwell (UK).