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- W2007287473 abstract "Three different cluster expansions for the evaluation of correlated one-body properties of $sensuremath{-}p$ and $sensuremath{-}d$ shell nuclei are compared. Harmonic oscillator wave functions and Jastrow-type correlations are used, while analytical expressions are obtained for the charge form factor, density distribution, and momentum distribution by truncating the expansions and using a standard Jastrow correlation function f. The harmonic oscillator parameter b and the correlation parameter $ensuremath{beta}$ have been determined by a least-squares fit to the experimental charge form factors in each case. The information entropy of nuclei in position space ${(S}_{r})$ and momentum space ${(S}_{k})$ according to the three methods are also calculated. It is found that the larger the entropy sum, ${S=S}_{r}{+S}_{k}$ (the net information content of the system), the smaller the values of ${ensuremath{chi}}^{2}.$ This indicates that maximal S is a criterion of the quality of a given nuclear model, according to the maximum entropy principle. Only two exceptions to this rule, out of many cases examined, were found. Finally an analytic expression for the so-called ``healing'' or ``wound'' integrals is derived with the function f considered, for any state of the relative two-nucleon motion, and their values in certain cases are computed and compared." @default.
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- W2007287473 date "2001-06-19" @default.
- W2007287473 modified "2023-09-27" @default.
- W2007287473 title "Evaluation of cluster expansions and correlated one-body properties of nuclei" @default.
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- W2007287473 doi "https://doi.org/10.1103/physrevc.64.014314" @default.
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