MASS SYSTEMATICS FOR A = 29-44 NUCLEI - THE DEFORMED A-APPROXIMATELY-32 REGION

被引:658
作者
WARBURTON, EK
BECKER, JA
BROWN, BA
机构
[1] UNIV HEIDELBERG, W-6900 HEIDELBERG, GERMANY
[2] MAX PLANCK INST NUCL PHYS, W-6900 HEIDELBERG 1, GERMANY
[3] MICHIGAN STATE UNIV, CYCLOTRON LAB, E LANSING, MI 48824 USA
[4] MICHIGAN STATE UNIV, DEPT PHYS & ASTRON, E LANSING, MI 48824 USA
关键词
D O I
10.1103/PhysRevC.41.1147
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
Further evidence for the presence of an anomaly in binding energies for the island of inversion centered at Z=11, N=21 is obtained by comparison of shell-model calculations to experiment. The calculations were done with a shell-model interaction that is applicable to nuclei with active valence nucleons in both the (1s,0d) and (0f,1p) major shells. This interaction is described in detail as are its predictions for binding energies and energy spectra of Z=820, N=1825 nuclei. These calculations provide the background for the exploration of the island of inversion. The extent of the island and the magnitude of the anomaly is explored by calculating the binding energies of 2Latin small letter h with stroke excitations of neutrons from the (1s,0d) shell to the (0f,1p) shell relative to the 0Latin small letter h with stroke ground state. The reason why mixed (0+2)Latin small letter h with stroke calculations are not considered reliable is addressed. Truncation schemes and a weak-coupling approximation are used to extend the range of the calculations. It is found that for Z=1012, N=2022 (and possibly N>22) nuclei the lowest 2Latin small letter h with stroke state is more bound than the 0Latin small letter h with stroke ground state. The role of odd n nLatin small letter h with stroke excitations is considered and it is found that the 1Latin small letter h with stroke ground state always lies below that of 3Latin small letter h with stroke, and for N=19, 21, and 23, the lowest 1Latin small letter h with stroke state is in close competition with 2Latin small letter h with stroke for the lowest binding energy. Collectivity is considered via E2 observables and energy spectra for the 2Latin small letter h with stroke ground-state bands. The reason for the existence of the island is discussed. © 1990 The American Physical Society.
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页码:1147 / 1166
页数:20
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