ENERGY LEVELS AND CONFIGURATIONS IN 94NB

被引:22
作者
JURNEY, ET
MOTZ, HT
SHELINE, RK
SHERA, EB
VERVIER, J
机构
[1] University of California, Los Alamos Scientific Laboratory, Los Alamos, NM
[2] Centre d'Étude de l'Énergie Nucléaire, Mol
关键词
!sup]93[!/sup]Nb(n; E; th; measured E[!sub]γ[!/sub; I[!sub]γ[!/sub; Q; !sup]94[!/sup]Nb deduced levels; Natural target; Ge(Li); detector;
D O I
10.1016/S0375-9474(68)90504-6
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
In the high-energy thermal neutron capture gamma-ray spectrum of 94Nb, 83 gamma rays were observed between 4500 keV, and the neutron binding energy determined here to be 7229.5 ± 1.5 keV. A total of 71 low-energy gamma rays was observed from 30 keV to 1500 keV. These and previous data were used to develop a decay scheme. The presence of states arising predominantly from the following configurations is proposed: πgfrac(9, 2) v (dfrac(5, 2))frac(5, 2)3, πgfrac(9, 2) v (dfrac(5, 2))frac(3, 2)3, π (pfrac(1, 2))- 1 (gfrac(9, 2))02 v (dfrac(5, 2))frac(5, 2)3 and, more tentatively, π (pfrac(1, 2))- 1 (gfrac(9, 2))02 v (dfrac(5, 2))frac(9, 2)3 and πgfrac(9, 2) v (dfrac(5, 2))02 Sfrac(1, 2). Some preliminary assignments of spins and parities to other states have also been attempted. Calculations based on 90Zr and 88Sr cores both agree well with energies, spectroscopic factors and reduced M1 transition probabilities. The generally close agreement between the calculations involving different cores is surprising in view of the considerable differences in the two sets of wave functions. This is probably to be understood in terms of the ability of the effective nucleon-nucleon interaction to absorb the effect of configuration mixing. © 1968 North-Holland Publishing Co., Amsterdam.
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