ORIGIN OF SPIN-ORBIT SPLITTING IN NUCLEAR HARTREE-FOCK CALCULATIONS

被引:6
作者
LANDE, A
SVENNE, JP
机构
[1] The Niels Bohr Institute, University of Copenhagen, Copenhagen
关键词
D O I
10.1016/0375-9474(69)90351-0
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
Hartree-Fock calculations have been carried out for 16O and 40Ca with the nucleon-nucleon potentials of Hamada-Johnston and Tabakin. The resulting spin-orbit splittings are strongly volume-dependent, being too large at the saturating radius and somewhat too small at the empirical radius. It is shown how a result from the first-order shell model theory for spherical, spin-saturated nuclei may be extended to HF theory; namely, that only a two-body spin-orbit term in the two-nucleon potential can give rise to a single-particle spin-orbit splitting. The contributions from the various first- and second-order terms in the reaction matrix elements of the Hamada-Johnston potential are isolated by use of the eigenstates of a HF Hamiltonian that has been suitably averaged to remove the spin dependence introduced by the spin-orbit term in the HJ potential. The splitting is seen to originate almost entirely in the 3P states of the long-range part of the spin-orbit term in the HJ potential, with a reduction of about 20 % due to the second-order discontinuity term in the reference spectrum method used for evaluating the odd-state reaction matrix elements. © 1969.
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页码:241 / &
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