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Cross section of α-induced reactions on iridium isotopes obtained from thick target yield measurement for the astrophysical γ process
Authors
Arnould
Arnould
+46 more
Avrigeanu
Bhardwaj
Burbidge
Chuvilskaya
Demetriou
Denisov
Fiebiger
G.G. Kiss
Gavriluk
Gy. Gyürky
Gyürky
Hauser
Huang
Hubbell
Ismail
Kiss
Kiss
Kiss
Kiss
Kiss
Käppeler
McFadden
McFarland
Mohr
Mohr
Rauscher
Rauscher
Rauscher
Rauscher
Rauscher
Rauscher
Rauscher
Rauscher
Sauerwein
Singh
Szücs
Szücs
T. Rauscher
T. Szücs
Thielemann
Travaglio
Travaglio
Xiaolong
Z. Halász
Ziegler
Zs. Fülöp
Publication date
30 November 2017
Publisher
'Elsevier BV'
Doi
View
on
arXiv
Abstract
© 2017 The Authors. Published by Elsevier B. V. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.The stellar reaction rates of radiative α-capture reactions on heavy isotopes are of crucial importance for the γ process network calculations. These rates are usually derived from statistical model calculations, which need to be validated, but the experimental database is very scarce. This paper presents the results of α-induced reaction cross section measurements on iridium isotopes carried out at first close to the astrophysically relevant energy region. Thick target yields of 191Ir(α,γ)195Au, 191Ir(α,n)194Au, 193Ir(α,n)196mAu, 193Ir(α,n)196Au reactions have been measured with the activation technique between Eα=13.4 MeV and 17 MeV. For the first time the thick target yield was determined with X-ray counting. This led to a previously unprecedented sensitivity. From the measured thick target yields, reaction cross sections are derived and compared with statistical model calculations. The recently suggested energy-dependent modification of the α + nucleus optical potential gives a good description of the experimental data.Peer reviewe
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info:doi/10.1016%2Fj.physletb....
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