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      Total absorption \(\gamma \) -ray spectroscopy of the \(\beta \) -delayed neutron emitters \({}^{87}\mathrm{Br}\) , \({}^{88}\mathrm{Br}\) , and \({}^{94}\mathrm{Rb}\)

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          Synthesis of the Elements in Stars

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            Is Open Access

            Astrophysical Reaction Rates From Statistical Model Calculations

            Theoretical reaction rates in the temperature range 0.01*10^9<=T[K]<=10.*10^9 are calculated in the statistical model (Hauser-Feshbach formalism) for targets with 10<=Z<=83 (Ne to Bi) and for a mass range reaching the neutron and proton driplines. Reactions considered are (n,gamma), (n,p), (n,alpha), (p,gamma), (p,alpha),(alpha,gamma), and their inverse reactions. Reaction rates as a function of temperature for thermally populated targets are given by analytic seven parameter fits. To facilitate comparison with experimental rates, the stellar enhancement factors are also tabulated. Two complete sets of rates have been calculated, one of which includes a phenomenological treatment of shell quenching for neutron-rich nuclei. These extensive datasets are provided on-line as electronic files, while a selected subset from one calculation is given as printed tables. A summary of the theoretical inputs and advice on the use of the provided tabulations is included.
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              Local and global nucleon optical models from 1 keV to 200 MeV

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                Author and article information

                Journal
                PRVCAN
                Physical Review C
                Phys. Rev. C
                American Physical Society (APS)
                2469-9985
                2469-9993
                February 2017
                February 21 2017
                : 95
                : 2
                Article
                10.1103/PhysRevC.95.024320
                692061a8-8f12-4ec6-b125-b21aa960fe63
                © 2017

                http://link.aps.org/licenses/aps-default-license

                http://link.aps.org/licenses/aps-default-accepted-manuscript-license

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