A dual-energy linac cargo inspection system

X-ray inspection systems for cargo containers, capable of performing Z analysis, are an actively evolving type of equipment for cargo inspections [1–3]. A linear electron accelerator with fast energy tuning, operating in the mode of interlacing low- and high-energy electron pulses, has been develope...

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Veröffentlicht in:Instruments and experimental techniques (New York) 2011-03, Vol.54 (2), p.241-248
Hauptverfasser: Zavadtsev, A. A., Zavadtsev, D. A., Krasnov, A. A., Sobenin, N. P., Kutsaev, S. V., Churanov, D. V., Urbant, M. O.
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Sprache:eng
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Zusammenfassung:X-ray inspection systems for cargo containers, capable of performing Z analysis, are an actively evolving type of equipment for cargo inspections [1–3]. A linear electron accelerator with fast energy tuning, operating in the mode of interlacing low- and high-energy electron pulses, has been developed for use in such a system. The output electron energy in this accelerator can vary in the range of 3–15 MeV under software control. An X-ray radiographic image of a container is obtained in a monoenergetic mode with a beam energy of 9 MeV. Pulses with energies of 4 and 9 MeV are used to recognize materials inside a container (i.e., perform Z analysis). The standing-wave linear electron accelerator operates at a frequency of 2856 MHz, its pulse repetition frequency with different energies is 240 Hz, the pulse duration is 10 μs, and the beam energy in each pulse is >10 J.
ISSN:0020-4412
1608-3180
DOI:10.1134/S0020441211020114