Abstract

Some new approaches are proposed, which are aimed at estimating the neutron flux from the radiator and tested object, reducing the role of background photo- and neutron-nuclear reactions (including a two-layer radiator with an advantage for neutrons up to 3.6), and increasing the sensitivity under irradiation from two lateral sides of tested objects and detection of decay γ′ photons from four sides within a solid angle up to 8π/3.

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