Cargando…

Relativistic Chiral Theory of Nuclear Matter and QCD Constraints

We present a relativistic chiral theory of nuclear matter which includes the effect of confinement. Nuclear binding is obtained with a chiral invariant scalar background field associated with the radial fluctuations of the chiral condensate Nuclear matter stability is ensured once the scalar respons...

Descripción completa

Detalles Bibliográficos
Autores principales: Chanfray, G., Ericson, M.
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:http://cds.cern.ch/record/1156263
_version_ 1780915750183108608
author Chanfray, G.
Ericson, M.
author_facet Chanfray, G.
Ericson, M.
author_sort Chanfray, G.
collection CERN
description We present a relativistic chiral theory of nuclear matter which includes the effect of confinement. Nuclear binding is obtained with a chiral invariant scalar background field associated with the radial fluctuations of the chiral condensate Nuclear matter stability is ensured once the scalar response of the nucleon depending on the quark confinement mechanism is properly incorporated. All the parameters are fixed or constrained by hadron phenomenology and lattice data. A good description of nuclear saturation is reached, which includes the effect of in-medium pion loops. Asymmetry properties of nuclear matter are also well described once the full rho meson exchange and Fock terms are included.
id cern-1156263
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
record_format invenio
spelling cern-11562632023-03-21T13:12:58Zhttp://cds.cern.ch/record/1156263engChanfray, G.Ericson, M.Relativistic Chiral Theory of Nuclear Matter and QCD ConstraintsNuclear Physics - TheoryWe present a relativistic chiral theory of nuclear matter which includes the effect of confinement. Nuclear binding is obtained with a chiral invariant scalar background field associated with the radial fluctuations of the chiral condensate Nuclear matter stability is ensured once the scalar response of the nucleon depending on the quark confinement mechanism is properly incorporated. All the parameters are fixed or constrained by hadron phenomenology and lattice data. A good description of nuclear saturation is reached, which includes the effect of in-medium pion loops. Asymmetry properties of nuclear matter are also well described once the full rho meson exchange and Fock terms are included.We present a relativistic chiral theory of nuclear matter which includes the effect of confinement. Nuclear binding is obtained with a chiral invariant scalar background field associated with the radial fluctuations of the chiral condensate Nuclear matter stability is ensured once the scalar response of the nucleon depending on the quark confinement mechanism is properly incorporated. All the parameters are fixed or constrained by hadron phenomenology and lattice data. A good description of nuclear saturation is reached, which includes the effect of in-medium pion loops. Asymmetry properties of nuclear matter are also well described once the full rho meson exchange and Fock terms are included.arXiv:0901.2479LYCEN-2009-01LYCEN 2009-01oai:cds.cern.ch:11562632009-01-19
spellingShingle Nuclear Physics - Theory
Chanfray, G.
Ericson, M.
Relativistic Chiral Theory of Nuclear Matter and QCD Constraints
title Relativistic Chiral Theory of Nuclear Matter and QCD Constraints
title_full Relativistic Chiral Theory of Nuclear Matter and QCD Constraints
title_fullStr Relativistic Chiral Theory of Nuclear Matter and QCD Constraints
title_full_unstemmed Relativistic Chiral Theory of Nuclear Matter and QCD Constraints
title_short Relativistic Chiral Theory of Nuclear Matter and QCD Constraints
title_sort relativistic chiral theory of nuclear matter and qcd constraints
topic Nuclear Physics - Theory
url http://cds.cern.ch/record/1156263
work_keys_str_mv AT chanfrayg relativisticchiraltheoryofnuclearmatterandqcdconstraints
AT ericsonm relativisticchiraltheoryofnuclearmatterandqcdconstraints