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Prog. Theor. Phys. Vol. 52 No. 4 (1974) pp. 1264-1273
Properties of Nuclear Matter for the Proposed NN One-Boson-Exchange Potential with Full Nonstatic Effects
Norio Hoshizaki,
Tsuyoshi Kadota and
Teruhisa Kasahara*
Department of Nuclear Engineering, Kyoto University, Kyoto
*Hokkaido University Computing Center, Hokkaido University, Sapporo
(Received April 10, 1974)
Abstract:
The properties of nuclear matter have been calculated to first order of the reaction matrix G. The Brueckner-Bethe-Goldstone equation for G has been solved in momentum space, with the single-particle potential energy being taken to be zero for particle states above the Fermi surface. The two-body interaction assumed is the proposed one-boson-exchange type potential represented in momentum space. It is found that the binding energy is -12.3 MeV/particle at a saturation density corresponding to the Fermi momentum of 1.57 fm-1, the compressibility is 148 MeV and the defect parameter is 0.133 at the saturation density. The saturation comes about essentially from tensor force. Influence of the experimental uncertainty in the 3S1-3D1 mixing parameter on nuclear matter is discussed. The results are compared with corresponding ones of other potentials.
URL :
http://ptp.ipap.jp/link?PTP/52/1264/
DOI : 10.1143/PTP.52.1264
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Citing Article(s) :
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Progress of Theoretical Physics Vol. 53 No. 3 (1975) pp. 732-749
:
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Nonstatic One-Boson-Exchange Potential with Retardation
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Toshio Obinata and Masanobu Wada
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Progress of Theoretical Physics Vol. 53 No. 5 (1975) pp. 1406-1419
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Nuclear Matter Properties for Nonstatic One-Boson-Exchange Potential with Retardation
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Toshio Obinata, Masanobu Wada and Teruhisa Kasahara
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Progress of Theoretical Physics Vol. 61 No. 6 (1979) pp. 1697-1714
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The Relativistic Effects on the Two-Nucleon and Nuclear Matter Systems
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Toshio Obinata and Masanobu Wada