科技报告详细信息
Active Detection and Imaging of Nuclear Materials with High-Brightness Gamma Rays
Barty, C J ; Gibson, D J ; Albert, F ; Anderson, S G ; Anderson, G G ; Betts, S M ; Berry, R D ; Fisher, S E ; Hagmann, C A ; Johnson, M S ; Messerly, M J ; Phan, H H ; Semenov, V A ; Shverdin, M Y ; Tremaine, A M ; Hartemann, F V ; Siders, C W ; McNabb, D P
关键词: BEAM PROFILES;    BRIGHTNESS;    COMPTON EFFECT;    COMPUTERIZED SIMULATION;    DETECTION;    ELECTRONS;    LASERS;    LINEAR ACCELERATORS;    PHOTONS;    PRODUCTION;    RESONANCE FLUORESCENCE;    SCATTERING;   
DOI  :  10.2172/948985
RP-ID  :  LLNL-TR-411038
PID  :  OSTI ID: 948985
Others  :  TRN: US0901886
学科分类:工程和技术(综合)
美国|英语
来源: SciTech Connect
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【 摘 要 】
A Compton scattering {gamma}-ray source, capable of producing photons with energies ranging from 0.1 MeV to 0.9 MeV has been commissioned and characterized, and then used to perform nuclear resonance fluorescence (NRF) experiments. The performances of the two laser systems (one for electron production, one for scattering), the electron photoinjector, and the linear accelerator are also detailed, and {gamma}-ray results are presented. The key source parameters are the size (0.01 mm{sup 2}), horizontal and vertical divergence (6 x 10 mrad{sup 2}), duration (10 ps), spectrum and intensity (10{sup 5} photons/shot). These parameters are summarized by the peak brightness, 1.5 x 10{sup 15} photons/mm{sup 2}/mrad{sup 2}/s/0.1% bandwidth, measured at 478 keV. Additional measurements of the flux as a function of the timing difference between the drive laser pulse and the relativistic photo-electron bunch, {gamma}-ray beam profile, and background evaluations are presented. These results are systematically compared to theoretical models and computer simulations. NRF measurements performed on {sup 7}Li in LiH demonstrate the potential of Compton scattering photon sources to accurately detect isotopes in situ.
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