DOE OSTI · 2203515
High-Energy X-ray Diffraction Microscopy for Nuclear Forensics (FY23 Project Report)
Abstract
Morphological information on nuclear material has been identified using visible light and scanning electron microscopy. These identify qualitative differences in particle morphology. Three-dimensional imaging of materials through alternating scanning electron microscopy imaging and focused ion beam milling has also been used. Unfortunately, these techniques are time- and labor-intensive, with significant sample preparation required and lengthy analysis times. Further, the resulting 3D images are qualitative, require manual identification, and do not capture statistically-representative populations. High energy X-ray 3D imaging using a direct-beam or diffracted-beam (High-Energy Diffraction Microscopy) have been developed at the Advanced Photon Source and can produce quantitative information on grains (phase, location, etc.) and pores (size distribution, sphericity) in a material. These techniques require only minutes to characterize a sample volume and are non-destructive, thus suitable for a wide range of existing samples and for confirmatory analyses to be carried out using conventional microscopy techniques.
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McLain, Derek R., Almer, Jonathan D., Guo, Xiaoxu, Krzysko, Anthony J., Hepler, Katherine C., Mouche, Peter A., Sharma, Hemant, Tsai, Yifen. 2023-09-27. High-Energy X-ray Diffraction Microscopy for Nuclear Forensics (FY23 Project Report). https://doi.org/10.2172/2203515
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