Please use this identifier to cite or link to this item: https://open.uns.ac.rs/handle/123456789/31707
Title: Efficiency study of a big volume well type NaI(Tl) detector by point and voluminous sources and Monte-Carlo simulation
Authors: Bikit Ištvan
Hansman Jan 
Mrđa Dušan 
Slivka Jaroslav
Krmar Miodrag 
Issue Date: 2015
Journal: Applied Radiation and Isotopes
Abstract: © 2015 Elsevier Ltd. The activity of environmental samples is usually measured by high resolution HPGe gamma spectrometers. In this work a set-up with a 9 in.x9 in. NaI well-detector with 3. in. thickness and a 3 in ×3 in plug detector in a 15-cm-thick lead shielding is considered as an alternative (Hansman, 2014). In spite of its much poorer resolution, it requires shorter measurement times and may possibly give better detection limits. In order to determine the U-238, Th-232, and K-40 content in the samples by this NaI(Tl) detector, the corresponding photopeak efficiencies must be known. These efficiencies can be found for certain source matrix and geometry by Geant4 simulation. We found discrepancy between simulated and experimental efficiencies of 5-50%, which can be mainly due to effects of light collection within the detector volume, an effect which was not taken into account by simulations. The influence of random coincidence summing on detection efficiency for radionuclide activities in the range 130-4000 Bq, was negligible. This paper describes also, how the efficiency in the detector depends on the position of the radioactive point source. To avoid large dead time, relatively weak Mn-54, Co-60 and Na-22 point sources of a few kBq were used. Results for single gamma lines and also for coincidence summing gamma lines are presented.
URI: https://open.uns.ac.rs/handle/123456789/31707
ISSN: 0969-8043
DOI: 10.1016/j.apradiso.2015.03.003
Appears in Collections:PMF Publikacije/Publications

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