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Constraints on the symmetry energy and neutron skins from experiments and theory.

Authors :
Tsang, M. B.
Stone, J. R.
Camera, F.
Danielewicz, P.
Gandolfi, S.
Hebeler, K.
Horowitz, C. J.
Lee, Jenny
Lynch, W. G.
Kohley, Z.
Lemmon, R.
Möller, P.
Murakami, T.
Riordan, S.
Roca-Maza, X.
Sammarruca, F.
Steiner, A. W.
Vidaña, I.
Yennello, S. J.
Source :
Physical Review C: Nuclear Physics. Jul2012, Vol. 86 Issue 1, p15803.1-15803.10. 10p.
Publication Year :
2012

Abstract

The symmetry energy contribution to the nuclear equation of state impacts various phenomena in nuclear astrophysics, nuclear structure, and nuclear reactions. Its determination is a key objective of contemporary nuclear physics, with consequences for the understanding of dense matter within neutron stars. We examine the results of laboratory experiments that have provided initial constraints on the nuclear symmetry energy and on its density dependence at and somewhat below normal nuclear matter density. Even though some of these constraints have been derived from properties of nuclei while others have been derived from the nuclear response to electroweak and hadronic probes, within experimental uncertainties-they are consistent with each other. We also examine the most frequently used theoretical models that predict the symmetry energy and its slope parameter. By comparing existing constraints on the symmetry pressure to theories, we demonstrate how contributions of three-body forces, which are essential ingredients in neutron matter models, can be determined. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
05562813
Volume :
86
Issue :
1
Database :
Academic Search Index
Journal :
Physical Review C: Nuclear Physics
Publication Type :
Academic Journal
Accession number :
79359357
Full Text :
https://doi.org/10.1103/PhysRevC.86.015803