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First On-Site True Gamma-Ray Imaging-Spectroscopy of Contamination near Fukushima Plant

机译:福岛工厂附近的第一批现场真伽马射线成像光谱学

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摘要

We have developed an Electron Tracking Compton Camera (ETCC), which provides a well-defined Point Spread Function (PSF) by reconstructing a direction of each gamma as a point and realizes simultaneous measurement of brightness and spectrum of MeV gamma-rays for the first time. Here, we present the results of our on-site pilot gamma-imaging-spectroscopy with ETCC at three contaminated locations in the vicinity of the Fukushima Daiichi Nuclear Power Plants in Japan in 2014. The obtained distribution of brightness (or emissivity) with remote-sensing observations is unambiguously converted into the dose distribution. We confirm that the dose distribution is consistent with the one taken by conventional mapping measurements with a dosimeter physically placed at each grid point. Furthermore, its imaging spectroscopy, boosted by Compton-edge-free spectra, reveals complex radioactive features in a quantitative manner around each individual target point in the background-dominated environment. Notably, we successfully identify a “micro hot spot” of residual caesium contamination even in an already decontaminated area. These results show that the ETCC performs exactly as the geometrical optics predicts, demonstrates its versatility in the field radiation measurement, and reveals potentials for application in many fields, including the nuclear industry, medical field, and astronomy.
机译:我们开发了电子跟踪康普顿相机(ETCC),通过将每个伽马的方向重建为一个点来提供定义明确的点扩展功能(PSF),并实现了同时测量MeV伽马射线的亮度和光谱时间。在这里,我们介绍了2014年在日本福岛第一核电站附近三个受污染地点进行的ETCC现场先导伽马成像光谱学的结果。获得的亮度(或发射率)的远程分布感官观察明确地转换为剂量分布。我们确认剂量分布与通过物理分布在每个网格点的剂量计进行的常规测绘测量的剂量分布一致。此外,其成像光谱在无康普顿边沿光谱的促进下,以定量方式揭示了背景主导环境中每个目标点周围的复杂放射性特征。值得注意的是,即使在已经被污染的地区,我们也成功地发现了残留铯污染的“微热点”。这些结果表明,ETCC的性能完全符合几何光学的预测,证明了其在野外辐射测量中的多功能性,并揭示了在许多领域中应用的潜力,包括核工业,医学领域和天文学。

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