Empirical study of the shape evolution and shape coexistence in Zn, Ge and Se isotopes
- Univ. of Delhi (India); DOE/OSTI
- Vanderbilt Univ., Nashville, TN (United States)
The spectra of the isotopes of Zn, Ge and Se in the region of the nuclear landscape display interesting spectral variations with N and Z. At first we study these structures empirically. The state-wise deformation status of each isotope is deduced using the power index formula. The average value of the power index displays the variation with neutron number N. The linear plot of versus for a given Z gives further information on the spectral variation with N. The level energy spectra are used to study the role of the excited bands in the phase transitions and the possible shape co-existence. The common spectral features of the three isotopic chains and some unique features are pointed out from our study and the role of the Nilsson single particle orbits is discussed. A comparison with recent works for Ge and Se isotopes reveals the importance of our empirical studies vis-à-vis the high efficiency experiments and different theoretical interpretations of the shape changes with N and Z and spin.
- Research Organization:
- Vanderbilt Univ., Nashville, TN (United States)
- Sponsoring Organization:
- USDOE; USDOE Office of Science (SC)
- Grant/Contract Number:
- FG02-88ER40407
- OSTI ID:
- 1610131
- Journal Information:
- Nuclear Physics. A, Journal Name: Nuclear Physics. A Vol. 983; ISSN 0375-9474
- Publisher:
- ElsevierCopyright Statement
- Country of Publication:
- United States
- Language:
- English
First-excited state g factors in the stable, even Ge and Se isotopes
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journal | October 2019 |
Global view of the rotational structure of the $\mathrm{ K^{\pi} = 2^{+} \gamma}$-bands
|
journal | July 2019 |
Generalized grodzins relation for ground band
|
journal | July 2019 |
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