Nuclear elastic scattering of protons below 250 MeV in FLUKA v4-4.0 and its role in single-event-upset production in electronics
Alexandra-Gabriela Serban, Andrea Coronetti, Ruben Garcia Alia, and Francesc Salvat Pujol

TL;DR
This paper introduces a new model for nuclear elastic scattering of protons below 10 MeV in FLUKA v4-4.0, significantly improving the accuracy of SEU production estimates in electronics at low proton energies.
Contribution
A novel nuclear elastic scattering model for protons below 10 MeV was integrated into FLUKA v4-4.0, enhancing its predictive accuracy for SEU production in electronics.
Findings
Order-of-magnitude better agreement with experimental data
Improved SEU cross section estimates in 1-10 MeV range
Addresses previous underestimation issues in FLUKA
Abstract
FLUKA is among the general-purpose codes for the Monte Carlo simulation of radiation transport that are routinely employed to estimate the production of single-event-upsets (SEUs) in commercial static random access memories (SRAMs) exposed to radiation. Earlier studies concerning the production of SEUs in commercial SRAMs under proton irradiation revealed very good agreement between experimental measurements and FLUKA estimates of the SEU production cross section for proton energies above 20-30 MeV. However, at lower proton energies, where the cross section for SEU production in such low-critical-charge components increases drastically, a FLUKA underestimation of up to two orders of magnitude was observed. Preliminary analyses indicated that this underestimation was in great measure due to the lack of nuclear elastic scattering of protons below 10 MeV in FLUKA up to version 4-3.4. To…
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Taxonomy
TopicsRadiation Effects in Electronics · Nuclear Materials and Properties · Graphite, nuclear technology, radiation studies
