Title of article
Symmetry energies, pairing energies, and mass equations Original Research Article
Author/Authors
J. Janecke، نويسنده , , T.W. OʹDonnell، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2007
Pages
25
From page
317
To page
341
Abstract
Symmetry and pairing energies of atomic nuclei are related to the differences between the excitation energies of isobaric analog states in the same nucleus. Numerous such excitation energies are known experimentally. In addition, a comprehensive global set can be deduced from the available experimental masses by applying Coulomb energy corrections. Replacing the experimental mass data by available theoretical mass predictions as basis for this procedure to extract symmetry and pairing energies makes it possible to directly compare theoretical and experimental quantities. These comparisons reflect upon the goodness or possible shortcomings of the respective mass equation since symmetry energies are related to the curvature of the nuclear mass surface. A discussion of eleven selected mass equations or procedures for reproducing experimental masses and extrapolating into regions of unknown nuclei is presented.
Keywords
Nuclear structure , analyzed , related data , isobaric analog states energies , deduced pairing and symmetry energy systematics , Comparisons with theoretical mass predictions and extrapolations , Z=1–118
Journal title
Nuclear physics A
Serial Year
2007
Journal title
Nuclear physics A
Record number
1203186
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