Abstract
In this work the authors present the probably first realistic shell model calculation of the low-lying spectra for the unstable even Sn isotopes with mass number A=102, 104, and 106. The effective shell model interaction was derived from a realistic free nucleon-nucleon interaction employing perturbative many-body techniques. For the free nucleon-nucleon interaction a recent version of the Bonn meson-exchange potential model was used. For several of the isotopes studied experimental data are rather scare or non-existent. The spectra derived may therefore serve as a guide for identifying levels in the unstable Sn isotopes near the doubly magic {sup 100}Sn core. The results were tested by calculating E2-transitions for the above nuclei. 19 refs., 2 tabs.
Citation Formats
Engeland, T, Hjorth-Jensen, M, Holt, A, and Osnes, E.
The structure of neutron deficient Sn isotopes.
Norway: N. p.,
1992.
Web.
Engeland, T, Hjorth-Jensen, M, Holt, A, & Osnes, E.
The structure of neutron deficient Sn isotopes.
Norway.
Engeland, T, Hjorth-Jensen, M, Holt, A, and Osnes, E.
1992.
"The structure of neutron deficient Sn isotopes."
Norway.
@misc{etde_10145411,
title = {The structure of neutron deficient Sn isotopes}
author = {Engeland, T, Hjorth-Jensen, M, Holt, A, and Osnes, E}
abstractNote = {In this work the authors present the probably first realistic shell model calculation of the low-lying spectra for the unstable even Sn isotopes with mass number A=102, 104, and 106. The effective shell model interaction was derived from a realistic free nucleon-nucleon interaction employing perturbative many-body techniques. For the free nucleon-nucleon interaction a recent version of the Bonn meson-exchange potential model was used. For several of the isotopes studied experimental data are rather scare or non-existent. The spectra derived may therefore serve as a guide for identifying levels in the unstable Sn isotopes near the doubly magic {sup 100}Sn core. The results were tested by calculating E2-transitions for the above nuclei. 19 refs., 2 tabs.}
place = {Norway}
year = {1992}
month = {Dec}
}
title = {The structure of neutron deficient Sn isotopes}
author = {Engeland, T, Hjorth-Jensen, M, Holt, A, and Osnes, E}
abstractNote = {In this work the authors present the probably first realistic shell model calculation of the low-lying spectra for the unstable even Sn isotopes with mass number A=102, 104, and 106. The effective shell model interaction was derived from a realistic free nucleon-nucleon interaction employing perturbative many-body techniques. For the free nucleon-nucleon interaction a recent version of the Bonn meson-exchange potential model was used. For several of the isotopes studied experimental data are rather scare or non-existent. The spectra derived may therefore serve as a guide for identifying levels in the unstable Sn isotopes near the doubly magic {sup 100}Sn core. The results were tested by calculating E2-transitions for the above nuclei. 19 refs., 2 tabs.}
place = {Norway}
year = {1992}
month = {Dec}
}