Study of the $ar{D}$N Interaction in a QCD Coulomb Gauge Quark Model

We study the $ar{D}$N interaction at low energies with a quark model inspired in the QCD Hamiltonian in Coulomb gauge. The model Hamiltonian incorporates a confining Coulomb potential extracted from a self-consistent quasiparticle method for the gluon degrees of freedom, and transverse-gluon hype...

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Main Authors: Vizcarra V.E., Krein G., Fontoura C.E.
Format: Article
Language:English
Published: EDP Sciences 2010-04-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20100303027
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spelling doaj-c0c1edf0b25e4027aff26c0a5d15008e2021-08-02T07:15:36ZengEDP SciencesEPJ Web of Conferences2100-014X2010-04-0130302710.1051/epjconf/20100303027Study of the $ar{D}$N Interaction in a QCD Coulomb Gauge Quark ModelVizcarra V.E.Krein G.Fontoura C.E.We study the $ar{D}$N interaction at low energies with a quark model inspired in the QCD Hamiltonian in Coulomb gauge. The model Hamiltonian incorporates a confining Coulomb potential extracted from a self-consistent quasiparticle method for the gluon degrees of freedom, and transverse-gluon hyperfine interaction consistent with a finite gluon propagator in the infrared. Initially a constituent-quark mass function is obtained by solving a gap equation and baryon and meson bound-states are obtained in Fock space using a variational calculation. Next, having obtained the constituent-quark masses and the hadron waves functions, an effective meson-nucleon interaction is derived from a quark-interchange mechanism. This leads to a short range mesonbaryon interaction and to describe long-distance physics vector- and scalar-meson exchanges described by effective Lagrangians are incorporated. The derived effective $ar{D}$N potential is used in a Lippmann-Schwinger equation to obtain phase shifts. The results are compared with a recent similar calculation using the nonrelativistic quark model. http://dx.doi.org/10.1051/epjconf/20100303027
collection DOAJ
language English
format Article
sources DOAJ
author Vizcarra V.E.
Krein G.
Fontoura C.E.
spellingShingle Vizcarra V.E.
Krein G.
Fontoura C.E.
Study of the $ar{D}$N Interaction in a QCD Coulomb Gauge Quark Model
EPJ Web of Conferences
author_facet Vizcarra V.E.
Krein G.
Fontoura C.E.
author_sort Vizcarra V.E.
title Study of the $ar{D}$N Interaction in a QCD Coulomb Gauge Quark Model
title_short Study of the $ar{D}$N Interaction in a QCD Coulomb Gauge Quark Model
title_full Study of the $ar{D}$N Interaction in a QCD Coulomb Gauge Quark Model
title_fullStr Study of the $ar{D}$N Interaction in a QCD Coulomb Gauge Quark Model
title_full_unstemmed Study of the $ar{D}$N Interaction in a QCD Coulomb Gauge Quark Model
title_sort study of the $ar{d}$n interaction in a qcd coulomb gauge quark model
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2010-04-01
description We study the $ar{D}$N interaction at low energies with a quark model inspired in the QCD Hamiltonian in Coulomb gauge. The model Hamiltonian incorporates a confining Coulomb potential extracted from a self-consistent quasiparticle method for the gluon degrees of freedom, and transverse-gluon hyperfine interaction consistent with a finite gluon propagator in the infrared. Initially a constituent-quark mass function is obtained by solving a gap equation and baryon and meson bound-states are obtained in Fock space using a variational calculation. Next, having obtained the constituent-quark masses and the hadron waves functions, an effective meson-nucleon interaction is derived from a quark-interchange mechanism. This leads to a short range mesonbaryon interaction and to describe long-distance physics vector- and scalar-meson exchanges described by effective Lagrangians are incorporated. The derived effective $ar{D}$N potential is used in a Lippmann-Schwinger equation to obtain phase shifts. The results are compared with a recent similar calculation using the nonrelativistic quark model.
url http://dx.doi.org/10.1051/epjconf/20100303027
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AT kreing studyoftheardninteractioninaqcdcoulombgaugequarkmodel
AT fontourace studyoftheardninteractioninaqcdcoulombgaugequarkmodel
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