4.5 Article

Quartet condensation and isovector pairing correlations in N = Z nuclei

期刊

PHYSICAL REVIEW C
卷 85, 期 6, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.85.061303

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资金

  1. Romanian Ministry of Education and Research [57]
  2. Spanish Ministry for Science and Innovation [FIS2009-07277]
  3. US Department of Energy [DE-FG02-96ER40985]

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We propose a simple quartet condensation model (QCM) which describes with very high accuracy the isovector pairing correlations in self-conjugate nuclei. The quartets have an alpha-like structure and are formed by collective isovector pairs. The accuracy of the QCMis tested for N = Z nuclei for which exact shell model diagonalizations can be performed. The calculations are done with two isovector pairing forces, one extracted from standard shell model interactions and the other of seniority type, acting, respectively, upon spherical and axially deformed single-particle states. It is shown that for all calculated nuclei the QCM gives very accurate values for the pairing correlations energies, with errors which do not exceed 1%. These results show clearly that the correlations induced by the isovector pairing in self-conjugate nuclei are of quartet type and also indicate that QCM is the proper tool to calculate the isovector proton-neutron correlations in mean field pairing models.

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