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Experimental and MCNP simulated gamma-ray spectra for the UNCOSS neutron-based explosive detector (CROSBI ID 167956)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Eleon, C. ; Perot, B. ; Carasco, C. ; Sudac, Davorin ; Obhođaš, Jasmina ; Valković, Vladivoj Experimental and MCNP simulated gamma-ray spectra for the UNCOSS neutron-based explosive detector // Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 629 (2011), 1; 220-229. doi: 10.1016/j.nima.2010.11.055

Podaci o odgovornosti

Eleon, C. ; Perot, B. ; Carasco, C. ; Sudac, Davorin ; Obhođaš, Jasmina ; Valković, Vladivoj

engleski

Experimental and MCNP simulated gamma-ray spectra for the UNCOSS neutron-based explosive detector

In the frame of the FP7 UNCOSS project (Underwater Coastal Sea Surveyor), whose aim is to develop a neutron-based explosive detection system to identify unexploded ordnance (UXO) lying on the sea bottom, the choice of the gamma-ray detector is essential to reach the optimal performances. This paper presents comparative tests between the two candidates: NaI(Tl) and LaBr3(Ce) detectors, in favour to the 3 in.×3 in. LaBr3(Ce) ; thus, confirming the choice previously performed by numerical simulation because of its higher fast timing properties, spectral resolution, and efficiency per volume unit. The gamma-ray spectra produced by 14 MeV tagged neutron beams on the elements of interest (C, O, N, Al, Fe, Si, and Ca) have also been recorded with this detector in order to unfold the spectrum of the interrogated object into elementary contributions. A qualitative comparison with the gamma-ray spectra simulated with the MCNPX computer code and the ENDFB/VII.0 nuclear library has also been performed to validate the numerical model. An additional quantitative validation has been performed with an explosive-like material (ammonium acetate).

associated particle technique ; fast neutron inspection ; gamma-ray detectors ; explosive detection ; Monte Carlo simulation

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Podaci o izdanju

629 (1)

2011.

220-229

objavljeno

0168-9002

1872-9576

10.1016/j.nima.2010.11.055

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Fizika

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