1. Neutron Transfer Reactions on Neutron-Rich N = 50 and N = 82 Nuclei Near the r-Process Path
- Author
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J. A. Cizewski, K. L. Jones, R. L. Kozub, S. D. Pain, J. S. Thomas, G. Arbanas, A. Adekola, D. W. Bardayan, J. C. Blackmon, K. Y. Chae, K. A. Chipps, D. Dean, L. Erikson, A. Gaddis, C. Harlin, R. Hatarik, J. Howard, M. S. Johnson, R. Kapler, W. Krolas, F. Liang, R. J. Livesay, Z. Ma, C. Matei, B. Moazen, C. D. Nesaraja, P. O’Malley, S. V. Paulauskas, D. Shapira, J. F. Shriner, D. J. Sissom, M. S. Smith, T. Swan, G. L. Wilson, Jan Jolie, Andreas Zilges, Nigel Warr, and Andrey Blazhev
- Subjects
Physics ,Silicon ,Proton ,Nuclear Theory ,chemistry.chemical_element ,Nuclear physics ,Neutron capture ,medicine.anatomical_structure ,chemistry ,medicine ,r-process ,Neutron ,Atomic physics ,Nuclear Experiment ,Spectroscopy ,Nucleus ,Excitation - Abstract
Neutron transfer (d,p) reaction studies on the N = 50 isotones, 82Ge and 84Se, and A≈130 nuclei, 130,132Sn and 134Te, have been measured. Direct neutron capture cross sections for 82Ge and 84Se (n,γ) have been calculated and are combined with Hauser‐Feshbach expectations to estimate total (n,γ) cross sections. The A≈130 studies used an early implementation of the ORRUBA array of position‐sensitive silicon strip detectors for reaction proton measurements. Preliminary excitation energy and angular distribution results from the A≈130 measurements are reported.
- Published
- 2009
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