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Toroidal high-spin isomers in light nuclei with N not equal to Z | Andrzej Staszczak
; Cheuk-Yin Wong
; | Date: |
29 Nov 2014 | Abstract: | The combined considerations of both the bulk liquid-drop-type behavior and
the quantized aligned rotation with cranked Skyrme-Hartree-Fock approach
revealed previously that even-even, N=Z, toroidal high-spin isomeric states
have general occurrences for light nuclei with A between 28 and 52. We find
that in this mass region there are in addition N not equal to Z toroidal
high-spin isomers when the single-particle shells for neutrons and protons
occur at the same cranked frequency $hbar omega$. Examples of N not equal to
Z toroidal high-spin isomers, $^{36}_{16}$S$_{20}$($I$=74$hbar$) and
$^{40}_{18}$Ar$_{22}$($I$=80,102$hbar$), are located and examined. The
systematic properties of these N not equal to Z toroidal high-spin isomers fall
into the same regular (muti-particle)-(muti-hole) patterns as other N=Z
toroidal high-spin isomers. | Source: | arXiv, 1412.0050 | Services: | Forum | Review | PDF | Favorites |
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