The Beta Decay of 79,80,81Zn and Nuclear Structure around the N=50 Shell Closure
This dissertation reports on new information in the [beta minus] decay of the neutron-rich nucleus 81Zn, which populates states in its daughter nucleus 81Ga. This includes new [gamma]-ray transitions in the daughter nucleus, 81Ga, as well as a [beta]-delayed neutron branching ratio. This isotope was...
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ndltd-UTENN-oai-trace.tennessee.edu-utk_graddiss-23812012-03-09T17:11:09Z The Beta Decay of 79,80,81Zn and Nuclear Structure around the N=50 Shell Closure Padgett, Stephen William This dissertation reports on new information in the [beta minus] decay of the neutron-rich nucleus 81Zn, which populates states in its daughter nucleus 81Ga. This includes new [gamma]-ray transitions in the daughter nucleus, 81Ga, as well as a [beta]-delayed neutron branching ratio. This isotope was produced at the Holifield Radioactive Ion Beam Facility of Oak Ridge National Laboratory through the Isotope Separation Online technique. They are fission fragments from proton-induced fission on a uranium carbide target. These fission fragments are ionized and both mass and isotopically separated before arriving at the Low Energy Radioactive Ion Beam Spectroscopy Station (LeRIBSS). The [gamma]-ray and [beta] electron emissions from the decays are measured and analyzed in this work. A new [beta]-delayed neutron branching ratio is reported for this decay, which is in agreement with recent theoretical values. The core excited states in the daughter nucleus, 81Ga, populated through allowed Gamow-Teller decays are analyzed. A trend in core excited states with other N=50 isotones indicates an increasing gap between a deeply bound neutron hole and the valence neutron above the N=50 gap upon moving towards doubly magic 78Ni. This dissertation also reports on additions to the decay schemes of 79Zn and 80Zn decays. Their decay level schemes have been expanded upon and an improved picture of the total allowed Gamow-Teller decay strength is known from 79Zn to 81Zn. This work presents an improved, albeit still incomplete, picture of the energy of states populated through Gamow-Teller decays from below to above the N=50 shell gap in zinc isotopes. 2011-12-01 text application/pdf http://trace.tennessee.edu/utk_graddiss/1212 Doctoral Dissertations Trace: Tennessee Research and Creative Exchange nuclear structure decay spectroscopy gamma decay beta decay 81Zn Nuclear Physics |
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nuclear structure decay spectroscopy gamma decay beta decay 81Zn Nuclear Physics Padgett, Stephen William The Beta Decay of 79,80,81Zn and Nuclear Structure around the N=50 Shell Closure |
description |
This dissertation reports on new information in the [beta minus] decay of the neutron-rich nucleus 81Zn, which populates states in its daughter nucleus 81Ga. This includes new [gamma]-ray transitions in the daughter nucleus, 81Ga, as well as a [beta]-delayed neutron branching ratio. This isotope was produced at the Holifield Radioactive Ion Beam Facility of Oak Ridge National Laboratory through the Isotope Separation Online technique. They are fission fragments from proton-induced fission on a uranium carbide target. These fission fragments are ionized and both mass and isotopically separated before arriving at the Low Energy Radioactive Ion Beam Spectroscopy Station (LeRIBSS). The [gamma]-ray and [beta] electron emissions from the decays are measured and analyzed in this work.
A new [beta]-delayed neutron branching ratio is reported for this decay, which is in agreement with recent theoretical values. The core excited states in the daughter nucleus, 81Ga, populated through allowed Gamow-Teller decays are analyzed. A trend in core excited states with other N=50 isotones indicates an increasing gap between a deeply bound neutron hole and the valence neutron above the N=50 gap upon moving towards doubly magic 78Ni.
This dissertation also reports on additions to the decay schemes of 79Zn and 80Zn decays. Their decay level schemes have been expanded upon and an improved picture of the total allowed Gamow-Teller decay strength is known from 79Zn to 81Zn. This work presents an improved, albeit still incomplete, picture of the energy of states populated through Gamow-Teller decays from below to above the N=50 shell gap in zinc isotopes. |
author |
Padgett, Stephen William |
author_facet |
Padgett, Stephen William |
author_sort |
Padgett, Stephen William |
title |
The Beta Decay of 79,80,81Zn and Nuclear Structure around the N=50 Shell Closure |
title_short |
The Beta Decay of 79,80,81Zn and Nuclear Structure around the N=50 Shell Closure |
title_full |
The Beta Decay of 79,80,81Zn and Nuclear Structure around the N=50 Shell Closure |
title_fullStr |
The Beta Decay of 79,80,81Zn and Nuclear Structure around the N=50 Shell Closure |
title_full_unstemmed |
The Beta Decay of 79,80,81Zn and Nuclear Structure around the N=50 Shell Closure |
title_sort |
beta decay of 79,80,81zn and nuclear structure around the n=50 shell closure |
publisher |
Trace: Tennessee Research and Creative Exchange |
publishDate |
2011 |
url |
http://trace.tennessee.edu/utk_graddiss/1212 |
work_keys_str_mv |
AT padgettstephenwilliam thebetadecayof798081znandnuclearstructurearoundthen50shellclosure AT padgettstephenwilliam betadecayof798081znandnuclearstructurearoundthen50shellclosure |
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