高分辨率CZT成像光谱仪的混合光谱和图像反卷积

C. Wahl, S. Brown, B. Kitchen, Weiyi Wang, W. Kaye
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引用次数: 0

摘要

大体积3d位置敏感CdZnTe用于光谱学和康普顿成像的许多应用。能够确定入射伽马射线通量,作为能量和方向的函数,当然是一个有用的特征,可以从每次测量中提供更多的信息。能量域中的反褶积应该能够识别发射线和能量上的连续分布。方向域中的反褶积应该能够识别点源和分布源。本文提出了一种混合反褶积方法,即利用图像改进光谱反褶积,利用频谱改进图像反褶积,同时速度足够快,可以在实际问题中运行。详细介绍了反褶积方法,并给出了代表性的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Spectral and Image Deconvolution for High-Resolution CZT Imaging Spectrometers
Large-volume 3D-position-sensitive CdZnTe is used in many applications for spectroscopy and Compton imaging. Being able to determine the incident gamma-ray flux, as a function of both the energy and direction, is, of course, a useful feature to provide more information from each measurement. Deconvolution in the energy domain should be able to identify emission lines and continuous distributions over energy. Deconvolution in the direction domain should be able to identify point sources and distributed sources. In this work, a hybrid deconvolution method is introduced, which uses the image to improve the spectral deconvolution and the spectrum to improve the image deconvolution, while still being fast enough to run on practical problems. Details of the deconvolution method are presented along with representative results.
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