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AbstractAbstract
[en] The γ-process in core-collapse and/or type Ia supernova explosions is thought to explain the origin of the majority of the so-called p nuclei (the 35 proton-rich isotopes between Se and Hg). Reaction rates for γ-process reaction network studies have to be predicted using Hauser–Feshbach statistical model calculations. Recent investigations have shown problems in the prediction of α-widths at astrophysical energies which are an essential input for the statistical model. It has an impact on the reliability of abundance predictions in the upper mass range of the p nuclei. With the measurement of the Er(α,n)Yb reaction cross sections at energies close to the astrophysically relevant energy range we tested the recently suggested low energy modification of the α+nucleus optical potential in a mass region where γ-process calculations exhibit an underproduction of the p nuclei. Using the same optical potential for the α-width which was derived from combined 162Er(α,n) and 162Er(α,γ) measurement makes it plausible that a low-energy modification of the optical α+nucleus potential is needed. (paper)
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Available from http://dx.doi.org/10.1088/0954-3899/42/5/055103; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
Journal
Journal of Physics. G, Nuclear and Particle Physics; ISSN 0954-3899;
; CODEN JPGPED; v. 42(5); [10 p.]

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