Monte Carlo simulation study on simultaneous detection of neutrons and gamma-rays with a GdI3:Ce scintillator detector

Author:

Park B.123ORCID,Park A.4,Lee S.4,Lee J.4,Kim C.4,Kim C.4

Affiliation:

1. Department of Health and Safety Convergence Science, Korea University, Seoul 02841, South Korea

2. Interdisciplinary Program in Precision Public Health, Korea University, Seoul 02841, South Korea

3. Advance Crystal Material/Device Research Center, Konkuk University, Seoul 05029, South Korea

4. Department of Radiological Science, College of Health Sciences, Catholic University of Pusan, Pusan 46252, South Korea

Abstract

Neutron detection using gadolinium (Gd) and its prompt gamma-rays is vital because of the high cross-section of Gd on thermal neutrons, thereby leading to significant interest in neutron detection with Gd-converted or Gd-loaded detector. However, simultaneous detection of neutron and gamma-rays with a Gd-loaded scintillator has been given less attention. In this study, we explored the feasibility of the GdI3:Ce detector for simultaneous detection with Monte Carlo N-Particle transport extended simulation. Furthermore, we examined the physical properties of Gd for application in the radiation field mixed with neutron and gamma-rays. Similarly, we simulated the geometry of the GdI3:Ce scintillator and its spectra obtained under various conditions. The results showed that GdI3:Ce with a thickness of 1[Formula: see text]cm is enough to absorb 90[Formula: see text] of photons with energy under 81[Formula: see text]keV. A shorter source-to-detector distance and larger detector size were superior to detecting prompt gamma-rays emitted from neutron capture, not only the gamma-rays from isomeric transition (named as general gamma-ray in this paper). Ultimately, spectra taken with the Gd3:Ce scintillator under the radiation field mixed with neutrons and gamma-ray showed gamma-ray peaks from both radio-isotopes and Gd[Formula: see text]Gd reaction, indicating the feasibility of the application of simultaneous detection.

Funder

National Research Froundation of Korea

Korea Institute of Energy Technology Evaluation and Planning

Publisher

World Scientific Pub Co Pte Ltd

Subject

General Physics and Astronomy,Nuclear and High Energy Physics

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