科技报告详细信息
RadTracker: Optical Imaging of High Energy Radiation Tracks
Vernon, S P ; Lowry, M E ; Comaskey, B J ; Heebner, J E ; Kallman, J S ; Richards, J B
Lawrence Livermore National Laboratory
关键词: Light Scattering;    46 Instrumentation Related To Nuclear Science And Technology;    75 Condensed Matter Physics, Superconductivity And Superfluidity;    Excitation;    Optical Modes;   
DOI  :  10.2172/1036868
RP-ID  :  UCRL-TR-230646
RP-ID  :  W-7405-ENG-48
RP-ID  :  1036868
美国|英语
来源: UNT Digital Library
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【 摘 要 】

This project examined the possibility of extending the recently demonstrated radoptic detection approach to gamma imaging. Model simulations of the light scattering process predicted that expected signal levels were small and likely below the detection limit of large area, room-temperature detectors. A series of experiments using pulsed x-ray excitation, modulated gamma excitation and optical pump-probe methods confirmed those theoretical predictions. At present the technique does not appear to provide a viable approach to volumetric radiation detection; however, in principal, orders of magnitude improvement in the SNR can result by using designer materials to concentrate and localize the radiation-absorption induced charge, simultaneously confining the optical mode to increase 'fill' factor and overlap of the probe beam with the affected regions, and employing high speed gated imaging detectors to measure the scattered signal.

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