plasma physics

Neutron-source fidelity for laser-driven D--D lithium-blanket tritium-breeding tests

arXiv:2607.13585

summary

The paper evaluates how the actual energy and angular distribution of neutrons from compact laser‑driven D‑D sources influences tritium production in lithium blankets, using particle‑in‑cell simulations and Monte‑Carlo transport to compare realistic sources with ideal isotropic 2.45 MeV neutrons.

Abstract

Compact deuterium--deuterium (D--D) neutron sources can provide controllable irradiation fields for lithium-blanket studies, although their broad joint energy and angle distributions differ from the conventional ~MeV isotropic representation. We couple particle-in-cell (PIC) simulations of target-normal-sheath-accelerated deuterons with a thick-target He source model and Monte Carlo neutron transport. For natural lithium, the seven two-dimensional sources change tritium production per source neutron by to relative to the ideal source. The matched three-dimensional calculation gives an increase of and lowers the corresponding ratio from to . Source substitutions show that the difference is predominantly spectral, since the real spectrum alone gives a factor of , while using the real neutron emission directions in place of isotropic emission adds only a further factor of in the three-dimensional case. The real spectrum lowers the Li contribution by , but the accessible Li response exceeds this loss. Enrichment to Li keeps the total change within . In the matched three-dimensional converter and blanket calculation, direct T production is tritons per source neutron and accounts for and of the combined production for natural and enriched lithium, respectively. High-density polyethylene moderation raises tritium production by about one order of magnitude but first weakens and then reverses the increase in blanket tritium production. The analysis quantifies source-model effects in compact breeding tests.

Topics & keywords

#laser-driven neutron sources#d-d reactions#lithium blanket tritium breeding#neutron spectrum effects#Monte Carlo transportparticle-in-cellD(d,n)3Heneutron angular distributiontritium productionlithium-6 enrichmentpolyethylene moderation
Neutron-source fidelity for laser-driven D--D lithium-blanket tritium-breeding tests · wovepaper