4.5 Article

Neutron skin thickness from the measured electric dipole polarizability in 68Ni, 120Sn, and 208Pb

期刊

PHYSICAL REVIEW C
卷 92, 期 6, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.92.064304

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资金

  1. Spanish MINECO [FIS2014-54672-P]
  2. FEDER
  3. Generalitat de Catalunya [2014SGR-401]
  4. Consolider-Ingenio Program CPAN [CSD2007-00042]
  5. ICCUB (Unidad de Excelencia Maria de Maeztu) from MINECO [MDM-2014-0369]
  6. FP7-PEOPLE-COFUND program NEWFELPRO
  7. Swiss National Science Foundation
  8. Croatian Science Foundation under the project Structure and Dynamics of Exotic Femtosystems [IP-2014-09-9159]
  9. United States Department of Energy Office of Science, Office of Nuclear Physics [DE-FD05-92ER40750]

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The information on the symmetry energy and its density dependence is deduced by comparing the available data on the electric dipole polarizability alpha(D) of Ni-68, Sn-120, and Pb-208 with the predictions of the random-phase approximation, using a representative set of nuclear energy density functionals. The calculated values of alpha(D) are used to validate different correlations involving alpha(D), the symmetry energy at the saturation density J, the corresponding slope parameter L, and the neutron skin thickness Delta r(np), as suggested by the droplet model. A subset of models that reproduce simultaneously the measured polarizabilities in Ni-68, Sn-120, and Pb-208 are employed to predict the values of the symmetry energy parameters at saturation density and Delta r(np). The resulting intervals are J = 30-35 MeV, L= 20-66 MeV; and the values for Delta r(np) in Ni-68, Sn-120, and Pb-208 are in the ranges 0.15-0.19, 0.12-0.16, and 0.13-0.19 fm, respectively. The strong correlation between the electric dipole polarizabilities of two nuclei is instrumental to predict the values of electric dipole polarizabilities in other nuclei.

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