In the frame of Chemical, Biological, Radiological, and Nuclear defense European activities, the ENEA, the Italian National Agency for New Technologies, Energy and Sustainable Economic Development, is proposing the Neutron Active Interrogation system (NAI), a device designed to find transuranic-based Radioactive Dispersal Devices hidden inside suspected packages. It is based on Differential Die-Away time Analysis, an active neutron technique targeted in revealing the presence of fissile material through detection of induced fission neutrons. Several Monte Carlo simulations, carried out by MCNPX code, and the development of ad-hoc design methods, have led to the realization of a first prototype based on a 14 MeV d–t neutron generator coupled with a tailored moderating structure, and an array of helium-3 neutron detectors. The complete system is characterized by easy transportability, light weight, and real-time response. First results have shown device’s capability to detect gram quantities of fissile materials.

In field application of differential Die-Away time technique for detecting gram quantities of fissile materials / Remetti, Romolo; Gandolfo, Giada; Lepore, Luigi; Cherubini, Nadia. - In: NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT. - ISSN 0168-9002. - STAMPA. - 870:(2017), pp. 123-130. [10.1016/j.nima.2017.07.033]

In field application of differential Die-Away time technique for detecting gram quantities of fissile materials

REMETTI, Romolo;GANDOLFO, GIADA;LEPORE, LUIGI;CHERUBINI, Nadia
2017

Abstract

In the frame of Chemical, Biological, Radiological, and Nuclear defense European activities, the ENEA, the Italian National Agency for New Technologies, Energy and Sustainable Economic Development, is proposing the Neutron Active Interrogation system (NAI), a device designed to find transuranic-based Radioactive Dispersal Devices hidden inside suspected packages. It is based on Differential Die-Away time Analysis, an active neutron technique targeted in revealing the presence of fissile material through detection of induced fission neutrons. Several Monte Carlo simulations, carried out by MCNPX code, and the development of ad-hoc design methods, have led to the realization of a first prototype based on a 14 MeV d–t neutron generator coupled with a tailored moderating structure, and an array of helium-3 neutron detectors. The complete system is characterized by easy transportability, light weight, and real-time response. First results have shown device’s capability to detect gram quantities of fissile materials.
2017
differential die away time analysis; homeland security; MCNPX; neutron generator; neutron techniques; radioactive dispersal device; nuclear and high energy physics; instrumentation
01 Pubblicazione su rivista::01a Articolo in rivista
In field application of differential Die-Away time technique for detecting gram quantities of fissile materials / Remetti, Romolo; Gandolfo, Giada; Lepore, Luigi; Cherubini, Nadia. - In: NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT. - ISSN 0168-9002. - STAMPA. - 870:(2017), pp. 123-130. [10.1016/j.nima.2017.07.033]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1005356
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