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NUCLEAR RESONANCE FLUORESCENCE FOR MATERIAL VERIFICATION IN DISMANTLEMENT

机译:核材料在核磁共振中的应用

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Nuclear resonance fluorescence (NRF) is a well-established physical process that provides an isotope-specific signature that can be exploited for isotopic detection and characterization of samples. Pacific Northwest National Laboratory has been investigating possible applications of NRF for national security. Of the investigated applications, the verification of material in the dismantlement process is the most promising. Through a combination of benchmarking measurements and radiation transport modeling, we have shown that NRF techniques with existing bremsstrahlung photon sources and a modest detection system can be used to detect highly enriched uranium in the quantities and time limits relevant to the dismantlement process. Issues such as orientation, placement and material geometry do not significantly impact the sensitivity of the technique. We have also investigated how shielding of the uranium would be observed through non-NRF processes to enable the accurate assay of the material. This paper will discuss our findings on how NRF and photon-interrogation techniques may be applied to the material verification in the dismantlement process.
机译:核共振荧光(NRF)是一个公认的物理过程,可提供同位素特异性的特征,可用于同位素检测和样品表征。西北太平洋国家实验室一直在研究NRF在国家安全中的可能应用。在所研究的应用中,拆卸过程中的材料验证是最有前途的。通过基准测试和辐射传输模型的组合,我们已经表明,利用现有的RF致辐射光子源和适度的检测系统的NRF技术可以用于检测与拆除过程相关的数量和时间限制的高浓缩铀。方向,放置和材料几何形状等问题不会显着影响该技术的灵敏度。我们还研究了如何通过非NRF工艺观察铀的屏蔽情况,以实现材料的准确测定。本文将讨论我们关于在拆解过程中如何将NRF和光子询问技术应用于材料验证的发现。

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