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Heavy Elements and Age Determinations
Authors:Thielemann  F-K  Hauser  P  Kolbe  E  Martinez-Pinedo  G  Panov  I  Rauscher  T  Kratz  K-L  Pfeiffer  B  Rosswog  S  Liebendörfer  M  Mezzacappa  A
Institution:(1) Departement für Physik und Astronomie, Universität Basel, Switzerland;(2) Institut für Kernchemie, Universität Mainz, D–55128 Mainz, Germany;(3) Dept. of Physics & Astronomy, University of Leicester, LE1 7RH Leicester, U.K;(4) Physics Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831–6371, U.S.A
Abstract:The age of the universe, measured from the Big Bang to the present, is at the focus of cosmology. Its determination relies, however, on the use of stellar objects or their products. Stellar explosions, like type Ia supernovae serve as standard(izable) candles to measure the expansion of the universe. Hertzsprung––Russell diagrams of globular clusters can determine the age of such clusters and thus are lower limits of the age of the galaxy and therefore also the universe. Some nuclear isotopes with half–lives comparable to the age of galaxies (and the universe) can serve as clocks (chronometers) for the duration of nucleosynthesis. The isotopes 238U and 232Th with half–lives of 4.5×109 and 1.4×1010 yr, decaying via alpha decay chains to Pb isotopes, are well suited to serve this purpose. They are products of the same nucleosynthesis process, the r-process. Therefore, the present paper aims at understanding the necessary environment conditions in the (stellar) production sites, the nuclear physics involved, the observational constraints for r-process nucleosynthesis, the results from nucleocosmochronology, and the remaining challenges and uncertainties which need to be overcome for a full understanding of the nature of the r-process.
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