Abstract
Principles and techniques of some neutron-based methods used to identify the antipersonnel landmines (APMs) are discussed. New results have been achieved in the field of neutron reflection, transmission, scattering and reaction techniques. Some conclusions are as follows: The neutron hand-held detector is suitable for the observation of anomaly caused by a DLM2-like sample in different soils with a scanning speed of 1m2/1.5min; the reflection cross section of thermal neutrons rendered the determination of equivalent thickness of different soil components possible; a simple method was developed for the determination of the thermal neutron flux perturbation factor needed for multi-elemental analysis of bulky samples; unfolded spectra of elastically backscattered neutrons using broad-spectrum sources render the identification of APMs possible; the knowledge of leakage spectra of different source neutrons is indispensable for the determination of the differential and integrated reaction rates and through it the dimension of the interrogated volume; the precise determination of the C/O atom fraction requires the investigations on the angular distribution of the 6.13MeV gamma-ray emitted in the 16O(n,n′γ) reaction. These results, in addition to the identification of landmines, render the improvement of the non-intrusive neutron methods possible. © 2004 Elsevier Ltd. All rights reserved.
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Csikai, J., Dóczi, R., & Király, B. (2004). Investigations on landmine detection by neutron-based techniques. Applied Radiation and Isotopes, 61(1), 11–20. https://doi.org/10.1016/j.apradiso.2004.02.011
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