Title :
Monte Carlo simulation of response function for LaBr3(Ce) detector and its internal-activity
Author :
Negm, H. ; Omer, M. ; Heishun Zen ; Daito, Izuru ; Kii, T. ; Masuda, Kohji ; Hori, Toshikazu ; Ohgaki, H. ; Hajima, Ryoichi ; Hayakawa, Takeshi ; Shizuma, Toshiyuki ; Kikuzawa, Nobuhiro ; Toyokawa, Hiroyuki
Author_Institution :
Inst. of Adv. Energy, Kyoto Univ., Uji, Japan
Abstract :
Lanthanum halide scintillator LaBr3(Ce) could potentially improve the performance of spectroscopic systems because of their fine energy resolution in comparison with traditional scintillator materials and a good linearity of the energy response. Monte Carlo simulation of a detector response function presents a very challenging problem especially in 2 MeV region where internal radioisotopes inside the LaBr3(Ce) crystal make the energy response complex structure. The detector response functions of LaBr3(Ce) (38.1 mm × 76.2 mm cylindrical) have been calculated for standard γ-ray sources and internal sources using simulation toolkit GEANT4. The internal activity was investigated in details by comparison simulation results with the experimental. As a result we can reproduce the experimental spectra, however, there is still a few missing sources around 2 MeV region.
Keywords :
Monte Carlo methods; gamma-ray production; radioactive sources; radioisotopes; solid scintillation detectors; GEANT4 simulation toolkit; LaBr3(Ce) detector response function; Monte Carlo simulation; detector response function; energy response complex structure; internal radioisotopes; lanthanum halide scintillator; spectroscopic system performance; standard gamma-ray sources; Crystals; Detectors; Energy measurement; Fitting; Monte Carlo methods; Physics; Pollution measurement; GEANT4; LaBr3(Ce); Response Function;
Conference_Titel :
Advancements in Nuclear Instrumentation Measurement Methods and their Applications (ANIMMA), 2013 3rd International Conference on
Conference_Location :
Marseille
Print_ISBN :
978-1-4799-1046-5
DOI :
10.1109/ANIMMA.2013.6727960