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Nuclear shell evolution and in-medium NN interaction

delete2012-09-10
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N
N. A. Smirnova *
K
K. Heyde
B
B. Bally
F
F. Nowacki
K
K. Sieja
DOI:10.1103/PhysRevC.86.034314delete
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Abstract

Abstract

En 中文
We report on a quantitative study of the evolution of the nuclear shell structure, in particular, effective single-particle energies (ESPEs), based on the spin-tensor decomposition of an effective two-body shell-model interaction. While the global trend of the ESPEs is mainly due to the central term of the effective interaction, variations of shell gaps invoke various components of the in-medium NN force. From a detailed analysis of a well-fitted realistic interaction in the sdpf shell-model space, two most important contributions for the evolution of the N = 20 and N = 28 shell gaps are confirmed to be the central term and the tensor term. The role of the latter is dominant to explain the energy shift of spin-orbit partners. Spin-tensor analysis of microscopic effective interactions in sd, pf, and gds shell-model spaces, contrasted with that of the phenomenologically adjusted ones, shows no evidence of amplification of the tensor component contribution; however, it points toward the neglect of three-body forces in the present microscopic interactions.
Keywords:
SPIN-TENSOR DECOMPOSITION
MATRIX-ELEMENTS
MODEL
SPECTROSCOPY
STATES
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Journal

Physical Review C cover
Physical Review C
IF:
3.4
Papers:
2.9W
Citations:
5.7W

Organization

U
universite de bordeaux
Scholars:
2.7W
Papers: 1.9W
Citations: 37
C
centre national de la recherche scientifique (cnrs)
Scholars:
24.5W
Papers: 18.2W
Citations: 279
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