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Selective energy neutron source based on the D-Li stripping reaction

Journal of Fusion Energy(1989)

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Abstract
A proposal is made on a version of the deuterium-lithium stripping (the FMIT)-type neutron source enhanced with its potential suitability for resolving complex neutron energy dependence in irradiation effects on materials. Some attractive features of such an accelerator-based source are skimmed out which cover the limitations fatal in the conventional means. The flexibility of controlling the quality and quantity of neutrons and the closer accessibility to in-situ-type experimentation are stressed as essential for the advanced studies on either interpretation of complex phenomena or innovating new materials compatible with specific neutron environments. A suggested conceptional design specification includes the selectivity of energy from 5, 10, and 14 MeV, and the maximum fluence of about 0.5-1X10(22) n/cm2/year which can create damage of a typical candidate fusion reactor material by around 10 dpa. The concept is stressed to be reasonable and a realistic option regarding the maturity of underlying technology, financial feasibility, and timing.
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Key words
D-Li stripping-type neutron source,FMIT,selectivity of neutron energy spectra,materials irradiation tests
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