Role of nuclear densities in nucleon elastic scattering
Author
dc.contributor.author
Arellano Sepúlveda, Hugo
Author
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Brieva Rodríguez, Francisco
es_CL
Author
dc.contributor.author
Love, W. G.
es_CL
Admission date
dc.date.accessioned
2013-12-19T19:25:26Z
Available date
dc.date.available
2013-12-19T19:25:26Z
Publication date
dc.date.issued
1990-08
Cita de ítem
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PHYSICAL REVIEW C VOLUME 42, NUMBER 2 AUGUST 1990, 652-658
en_US
Identifier
dc.identifier.uri
https://repositorio.uchile.cl/handle/2250/125811
General note
dc.description
Artículo de publicación ISI
en_US
Abstract
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A framework based on a full-folding model of the nucleon optical potential is presented for studying
nuclear densities of closed-shell nuclei using intermediate energy nucleon scattering. Using a
density-matrix expansion for the mixed density, a simplified optical potential is obtained that retains
the energy and momentum dependence of the effective interaction prescribed by the full-folding
model. The interplay between the local density, nonlocality of the mixed-density and off-energyshell
degrees of freedom in the full-folding approach to nucleon scattering is made relatively transparent.
The validity of the proposed framework is established for momentum transfers out to -2.5
fm ' in p+' 0 and p+ Ca scattering at energies between 200 and 400 MeV. The sensitivity of the
scattering observables to nuclear densities is investigated.