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- W2040003260 abstract "The complexities of the nuclear many-body problem are such that a simplified calculational prescription is desirable. The lowest order constrained variational (LOCV) technique is one such prescription. The formalism for LOCV calculations with a constraint requiring normalisation of the correlated two-body wavefunctions is developed. Applications to a number of model problems are described and where possible comparisons are made with the results of fermion hypernetted chain (F.H.N.C.) and Monte Carlo (M.C.) calculations. Encouraged by the success of these comparisons the technique is applied to various nucleon fluids with realistic N−N interactions. The predicted overbinding of nuclear matter is attributed to a neglect of the N∗(1234) degree of freedom in intermediate two-nucleon states and to N−N interactions in partial waves with J ≥ 3. The convergence of the cluster expansion is investigated by an approximate calculation of the three-body cluster energy and normalisation factor. Possible extensions of the technique to finite nuclei are discussed." @default.
- W2040003260 created "2016-06-24" @default.
- W2040003260 creator A5014225344 @default.
- W2040003260 date "1981-01-01" @default.
- W2040003260 modified "2023-10-16" @default.
- W2040003260 title "Constrained variational calculations for the nuclear many-body problem" @default.
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- W2040003260 doi "https://doi.org/10.1016/0146-6410(81)90046-6" @default.
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