Measurement of intense continuous and flash radiographic sources with Compton spectrometers

A. Gehring, M. Espy, T. Burris-Mog, C. Gautier, T. Haines, D. Moir, R. Shurter
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引用次数: 2

Abstract

Our team at Los Alamos National Laboratory has successfully employed Compton spectrometers to measure the x-ray spectra of intense radiographic sources, both continuous and flash. In this method, a collimated beam of x-rays incident on a convertor foil ejects Compton electrons. A collimator may be inserted into the entrance of the spectrometer to select the angular acceptance of the forward-scattered electrons, which then enter the magnetic field region of the spectrometer. The position of the electrons at the magnet's focal plane is proportional to the square root of their momentum, allowing the x-ray spectrum to be reconstructed. Two spectrometers have been fielded since 2013; a neodymium-iron-boron permanent magnet with an energy range of 500 keV to 20 MeV, and a new samarium-cobalt magnet with an energy range of 50 keV to 4 MeV. Measured spectra were produced by x-ray generating machines of various intensities (~5 rad at 1 m per 50 ns pulse to >2000 rad/min at 1 m) and different endpoints (range of 2.25 to 20 MeV). Preliminary analysis of the electron spectra produced at two different facilities with various beryllium converter foil thicknesses is presented in these proceedings.
用康普顿光谱仪测量强连续和闪光射线源
我们在洛斯阿拉莫斯国家实验室的团队已经成功地使用康普顿光谱仪来测量强射线源的x射线光谱,包括连续的和闪光的。在这种方法中,一束准直的x射线入射到转换器箔片上,发射出康普顿电子。可以在光谱仪的入口插入准直器,以选择正向散射电子的角度接受度,然后这些电子进入光谱仪的磁场区域。电子在磁体焦平面上的位置与它们动量的平方根成正比,这使得x射线光谱得以重建。自2013年以来,已有两台光谱仪投入使用;能量范围为500 keV至20 MeV的钕铁硼永磁体和能量范围为50 keV至4 MeV的新型钐钴永磁体。测量光谱是由不同强度的x射线产生机产生的(每50 ns脉冲在1 m处约5 rad到在1 m处>2000 rad/min)和不同的端点(范围为2.25至20 MeV)。本文对两种不同铍转炉箔厚度的设备上产生的电子能谱进行了初步分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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