Low-, medium-, and high-spin states in the N=Z+1 nucleus 63Ga
(2021) In Physical Review C 103(3).- Abstract
- The fusion-evaporation reaction 28Si+40Ca at 122 MeV beam energy was used to populate excited states in the N=Z+1 nucleus 63Ga. With the combination of the Gammasphere spectrometer and the Microball CsI(Tl) charged-particle detector array, the level scheme of 63Ga was extended by more than a factor of two in terms of number of γ-ray transitions and excited states, excitation energy (Ex>30 MeV), and angular momentum (I>30 ℏ). Nine regular sequences of states were newly established in the high-spin part of the level scheme. The majority of these rotational band structures could be connected to the previously known part of the level scheme by high-energy... (More)
- The fusion-evaporation reaction 28Si+40Ca at 122 MeV beam energy was used to populate excited states in the N=Z+1 nucleus 63Ga. With the combination of the Gammasphere spectrometer and the Microball CsI(Tl) charged-particle detector array, the level scheme of 63Ga was extended by more than a factor of two in terms of number of γ-ray transitions and excited states, excitation energy (Ex>30 MeV), and angular momentum (I>30 ℏ). Nine regular sequences of states were newly established in the high-spin part of the level scheme. The majority of these rotational band structures could be connected to the previously known part of the level scheme by high-energy γ-ray transitions in the energy range Eγ=4–6 MeV. Low-spin states were assessed by shell-model calculations. The high-spin rotational bands were interpreted and classified by means of cranked Nilsson-Strutinsky calculations. (Less)
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https://lup.lub.lu.se/record/00353faf-ae2f-4b7a-999f-054e9e8cdc78
- author
- organization
- publishing date
- 2021-03-05
- type
- Contribution to journal
- publication status
- published
- subject
- keywords
- nuclear structure and decays, N=Z nuclei, gamma-ray spectroscopy
- in
- Physical Review C
- volume
- 103
- issue
- 3
- article number
- 034306
- pages
- 20 pages
- publisher
- American Physical Society
- external identifiers
-
- scopus:85102946447
- ISSN
- 2469-9985
- DOI
- 10.1103/PhysRevC.103.034306
- project
- Nuclear Structure at the Limits: Isotope-selective Spectroscopy
- language
- English
- LU publication?
- yes
- id
- 00353faf-ae2f-4b7a-999f-054e9e8cdc78
- date added to LUP
- 2021-03-05 18:42:20
- date last changed
- 2024-02-01 17:34:10
@article{00353faf-ae2f-4b7a-999f-054e9e8cdc78, abstract = {{The fusion-evaporation reaction <sup>28</sup>Si+<sup>40</sup>Ca at 122 MeV beam energy was used to populate excited states in the <i>N</i>=<i>Z</i>+1 nucleus <sup>63</sup>Ga. With the combination of the Gammasphere spectrometer and the Microball CsI(Tl) charged-particle detector array, the level scheme of <sup>63</sup>Ga was extended by more than a factor of two in terms of number of γ-ray transitions and excited states, excitation energy (<i>E<sub>x</sub></i>>30 MeV), and angular momentum (<i>I</i>>30 ℏ). Nine regular sequences of states were newly established in the high-spin part of the level scheme. The majority of these rotational band structures could be connected to the previously known part of the level scheme by high-energy <i>γ</i>-ray transitions in the energy range <i>E<sub>γ</sub></i>=4–6 MeV. Low-spin states were assessed by shell-model calculations. The high-spin rotational bands were interpreted and classified by means of cranked Nilsson-Strutinsky calculations.}}, author = {{Rudolph, D. and Ragnarsson, I. and Clark, R. M. and Andreoiu, C. and Carpenter, M. P. and Ekman, J. and Fahlander, C. and Kondev, F. G. and Lauritsen, T. and Sarantites, D. G. and Seweryniak, D. and Svensson, C. E.}}, issn = {{2469-9985}}, keywords = {{nuclear structure and decays; N=Z nuclei; gamma-ray spectroscopy}}, language = {{eng}}, month = {{03}}, number = {{3}}, publisher = {{American Physical Society}}, series = {{Physical Review C}}, title = {{Low-, medium-, and high-spin states in the <i>N</i>=<i>Z</i>+1 nucleus <sup>63</sup>Ga}}, url = {{https://lup.lub.lu.se/search/files/94837204/Ga63_PhysRevC.103.034306.pdf}}, doi = {{10.1103/PhysRevC.103.034306}}, volume = {{103}}, year = {{2021}}, }