DocumentCode :
3388045
Title :
3D X-ray diffraction imaging for materials ID
Author :
Evans, Paul ; Rogers, Keith
Author_Institution :
Imaging Sci. Group, Nottingham Trent Univ., Nottingham, UK
fYear :
2010
fDate :
8-10 Nov. 2010
Firstpage :
325
Lastpage :
329
Abstract :
We present a 3D imaging technique, which combines the novel acquisition of diffracted X-ray signals and X-ray absorption data. The relatively high intensity of the diffraction signals afforded by our new approach has important implications for high specificity and high sensitivity security scanning applications. Our technique utilises a configuration of a tubular X-ray beam incident upon a ring absorption sensor and a diffraction sensor. The relative translation of the object under inspection enables the 3D scanning of extended objects. The sensing arrangement focuses on planes normal to the symmetry axis of the interrogating X-ray beam. Orders of magnitude increase in the intensity of the diffraction signal is possible in comparison with conventional angular dispersive methods. Our transmission mode approach effects a convergent and therefore inherently compact, diffracted ray geometry. We have undertaken initial testing and evaluation of this concept with various arrangements of objects fabricated from a range of different materials. The synthesis of the absorption and diffraction data is the basis for a new 3D imaging modality.
Keywords :
X-ray diffraction; X-ray imaging; 3D X-ray diffraction imaging; 3D imaging technique; 3D scanning; X-ray absorption data; diffracted X-ray signal; diffraction sensor; materials ID; ring absorption sensor; tubular X-ray beam; Absorption; Diffraction; Geometry; Imaging; Materials; X-ray diffraction; X-ray imaging; X-ray diffraction; coherent scatter; materials identification; security screening;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Technologies for Homeland Security (HST), 2010 IEEE International Conference on
Conference_Location :
Waltham, MA
Print_ISBN :
978-1-4244-6047-2
Type :
conf
DOI :
10.1109/THS.2010.5654928
Filename :
5654928
Link To Document :
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