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Solution of the microscopic gap equation for a slab of nuclear matter with the Paris NN-potential

✍ Scribed by S.S. Pankratov; M. Baldo; U. Lombardo; E.E. Saperstein; M.V. Zverev


Publisher
Elsevier Science
Year
2006
Tongue
English
Weight
175 KB
Volume
765
Category
Article
ISSN
0375-9474

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✦ Synopsis


The gap equation in the 1 S 0 -channel is solved for a nuclear slab with the separable form of the Paris potential. The gap equation is considered in the model space in terms of the effective pairing interaction which is found in the complementary subspace. The absolute value of the gap βˆ† turned out to be very sensitive to the cutoff K max in the momentum space in the equation for the effective interaction. It is necessary to take K max = 160-180 fm -1 to guarantee 1% accuracy for βˆ†. The gap equation itself is solved directly, without any additional approximations. The solution reveals the surface enhancement of the gap βˆ† which was earlier found with an approximate consideration. A strong surface-volume interplay was found also implying a kind of the proximity effect. The diagonal matrix elements of βˆ† turned out to be rather close to the empirical values for heavy atomic nuclei.


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