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Abstract Model-observation comparisons of type-I X-ray bursts (XRBs) can reveal the properties of accreting neutron star systems, including the neutron star compactness. XRBs are powered by nuclear burning, and a handful of reactions have been shown to impact the model results. Reactions in the NiCu cycles, featuring a competition between59Cu(p,γ)60Zn and59Cu(p,α)56Ni, have been shown to be among the most important reactions as they are a critical checkpoint inrp-process flow and significantly impact the light curves and burst ashes. We report a direct measurement of59Cu(p,α)56Ni, bringing stringent constraints on this reaction rate. New results rule out a strong NiCu cycle in XRBs, with a negligible degree of recycling, ≤5% up to 1.5 GK. The new reaction rate, when varied within new uncertainty limits, shows no impact on one-zone XRB model light curves tailored for clocked-bursterGS1826–24, hence removing an important nuclear physics uncertainty in the model-observation comparison.more » « lessFree, publicly-accessible full text available February 20, 2027
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Kovoor, J.; Jones, K. L.; Hooker, J.; Vostinar, M.; Kanungo, R.; Pain, S. D.; Alcorta, M.; Allen, J.; Andreoiu, C.; Atar, L.; et al (, Physical Review C)
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Abba, A.; Accorsi, C.; Agnes, P.; Alessi, E.; Amaudruz, P.; Annovi, A.; Desages, F. Ardellier; Back, S.; Badia, C.; Bagger, J.; et al (, Physics of Fluids)null (Ed.)
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