Experimental neutron capture data of $^{58}$Ni from the CERN n_TOF facility
Abstract
The Ni cross section has been measured at the neutron time of flight facility n_TOF at CERN, in the energy range from 27 meV up to 400 keV. In total, 51 resonances have been analyzed up to 122 keV. Maxwellian averaged cross sections (MACS) have been calculated for stellar temperatures of kT5-100 keV with uncertainties of less than 6%, showing fair agreement with recent experimental and evaluated data up to kT = 50 keV. The MACS extracted in the present work at 30 keV is 34.20.61.8 mb, in agreement with latest results and evaluations, but 12% lower relative to the recent KADoNIS compilation of astrophysical cross sections. When included in models of the s-process nucleosynthesis in massive stars, this change results in a 60% increase of the abundance of Ni, with a negligible propagation on heavier isotopes. The reason is that, using both the old or the new MACS, 58Ni is efficiently depleted by neutron captures.
Keywords
Cite
@article{arxiv.1402.1032,
title = {Experimental neutron capture data of $^{58}$Ni from the CERN n_TOF facility},
author = {TOF collaboration and P. Žugec and M. Barbagallo and N. Colonna and D. Bosnar and S. Altstadt and J. Andrzejewski and L. Audouin and V. Bécares and F. Bečvář and F. Belloni and E. Berthoumieux and J. Billowes and V. Boccone and M. Brugger and M. Calviani and F. Calviño and D. Cano-Ott and C. Carrapiço and F. Cerutti and E. Chiaveri and M. Chin and G. Cortés and M. A. Cortés-Giraldo and M. Diakaki and C. Domingo-Pardo and I. Duran and N. Dzysiuk and C. Eleftheriadis and A. Ferrari and K. Fraval and S. Ganesan and A. R. García and G. Giubrone and M. B. Gómez-Hornillos and I. F. Gonçalves and E. González-Romero and E. Griesmayer and C. Guerrero and F. Gunsing and P. Gurusamy and D. G. Jenkins and E. Jericha and Y. Kadi and F. Käppeler and D. Karadimos and P. Koehler and M. Kokkoris and M. Krtička and J. Kroll and C. Langer and C. Lederer and H. Leeb and L. S. Leong and R. Losito and A. Manousos and J. Marganiec and T. Martìnez and C. Massimi and P. F. Mastinu and M. Mastromarco and M. Meaze and E. Mendoza and A. Mengoni and P. M. Milazzo and F. Mingrone and M. Mirea and W. Mondalaers and C. Paradela and A. Pavlik and J. Perkowski and M. Pignatari and A. Plompen and J. Praena and J. M. Quesada and T. Rauscher and R. Reifarth and A. Riego and F. Roman and C. Rubbia and R. Sarmento and P. Schillebeeckx and S. Schmidt and G. Tagliente and J. L. Tain and D. Tarrío and L. Tassan-Got and A. Tsinganis and S. Valenta and G. Vannini and V. Variale and P. Vaz and A. Ventura and R. Versaci and M. J. Vermeulen and V. Vlachoudis and R. Vlastou and A. Wallner and T. Ware and M. Weigand and C. Weiß and T. Wright},
journal= {arXiv preprint arXiv:1402.1032},
year = {2014}
}
Comments
10 pages, 8 figures, 5 tables