科技报告详细信息
Monte Carlo Simulations of Ultra-High Energy Resolution Gamma Detectors for Nuclear Safeguards
Robles, A ; Drury, O B ; Friedrich, S
关键词: ACCURACY;    CONFIGURATION;    DETECTION;    ENERGY RESOLUTION;    GAMMA SOURCES;    GE SEMICONDUCTOR DETECTORS;    GEOMETRY;    NONDESTRUCTIVE ANALYSIS;    RADIOACTIVE MATERIALS;    RESOLUTION;    SAFEGUARDS;    SCATTERING;    SHIELDING;    SPECTRAL RESPONSE;    SPECTROMETERS;    SPENT FUELS;   
DOI  :  10.2172/967284
RP-ID  :  LLNL-TR-416150
PID  :  OSTI ID: 967284
Others  :  TRN: US0904440
学科分类:核物理和高能物理
美国|英语
来源: SciTech Connect
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【 摘 要 】

Ultra-high energy resolution superconducting gamma-ray detectors can improve the accuracy of non-destructive analysis for unknown radioactive materials. These detectors offer an order of magnitude improvement in resolution over conventional high purity germanium detectors. The increase in resolution reduces errors from line overlap and allows for the identification of weaker gamma-rays by increasing the magnitude of the peaks above the background. In order to optimize the detector geometry and to understand the spectral response function Geant4, a Monte Carlo simulation package coded in C++, was used to model the detectors. Using a 1 mm{sup 3} Sn absorber and a monochromatic gamma source, different absorber geometries were tested. The simulation was expanded to include the Cu block behind the absorber and four layers of shielding required for detector operation at 0.1 K. The energy spectrum was modeled for an Am-241 and a Cs-137 source, including scattering events in the shielding, and the results were compared to experimental data. For both sources the main spectral features such as the photopeak, the Compton continuum, the escape x-rays and the backscatter peak were identified. Finally, the low energy response of a Pu-239 source was modeled to assess the feasibility of Pu-239 detection in spent fuel. This modeling of superconducting detectors can serve as a guide to optimize the configuration in future spectrometer designs.

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