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Shell-model calculations on Ni and Cu isotopes.

Authors :
Koops, J.
Glaudemans, P.
Source :
Zeitschrift für Physik; 1977, Vol. 280 Issue 2, p181-209, 29p
Publication Year :
1977

Abstract

Binding energies, excitation energies and spectroscopic factors have been calculated forNi andCu in an unrestricted (2p, l f,2p) shell-model space. The effective two-body matrix elements are obtained from the modified surface delta interaction (MSDI) and from a least-squares fit to experimental binding and excitation energies (ASDI). The average deviation between about 100 experimental and calculated energies is 0.14MeV for MSDI and 0.08 MeV for ASDI. Excitation energies of high-spin states are given also. Spectroscopic factors have been calculated for all single-nucleon transfer reactions on stable Ni or Cu targets leading to Ni or Cu isotopes. For spectroscopic factors larger than 0.4 the average deviation between theory and experiment is about 30%. The experimentally observed and calculated spectroscopic strengths are compared by using sum rules and are found to be consistent. An extensive compilation has been made of experimental data on energies, J assignments and spectroscopic factors. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00443328
Volume :
280
Issue :
2
Database :
Complementary Index
Journal :
Zeitschrift für Physik
Publication Type :
Academic Journal
Accession number :
73505988
Full Text :
https://doi.org/10.1007/BF01409548