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Calibration of Cherenkov detectors for monoenergetic photon imaging in active interrogation applications

机译:主动询问应用中用于单能光子成像的Cherenkov检测器的校准

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Active interrogation of cargo containers using monoenergetic photons offers a rapid and low-dose approach to search for shielded special nuclear materials. Cherenkov detectors can be used for imaging of the cargo provided that gamma ray energies used in interrogation are well resolved, as the case in ~(11)B (d,n-γ)~(12)C reaction resulting in 4.4 MeV and 15.1 MeV photons. While an array of Cherenkov threshold detectors reduces low energy background from scatter while providing the ability of high contrast transmission imaging, thus confirming the presence of high-Z materials, these detectors require a special approach to energy calibration due to the lack of resolution. In this paper, we discuss the utility of Cherenkov detectors for active interrogation with monoenergetic photons as well as the results of computational and experimental studies of their energy calibration. The results of the studies with sources emitting monoenergetic photons as well as complex gamma ray spectrum sources, for example ~(232)Th, show that calibration is possible as long as the energies of photons of interest are distinct.
机译:使用单能光子对集装箱进行主动询问,提供了一种快速,低剂量的方法来寻找被屏蔽的特殊核材料。 Cherenkov检测器可用于对货物成像,前提是可以很好地解决审讯中使用的伽马射线能量,例如〜(11)B(d,n-γ)〜(12)C反应,导致4.4 MeV和15.1 MeV光子。切伦科夫阈值检测器阵列减少了散射的低能量本底,同时提供了高对比度透射成像的能力,从而确认了高Z材料的存在,但由于缺乏分辨率,这些检测器需要特殊的能量校准方法。在本文中,我们讨论了Cherenkov检测器在单能量光子主动询问中的实用性以及能量校准的计算和实验研究结果。使用发射单能光子的源以及复杂的伽玛射线谱源(例如〜(232)Th)进行的研究结果表明,只要感兴趣的光子的能量不同,就可以进行校准。

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