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Exploring the light-quark interaction
Authors:CHANG Lei  Ian CCLOT  Bruno El-BENNICH  Thomas KLHN  Craig DROBERTS
Institution:1. Institute of Applied Physics and Computational Mathematics,Beijing 100094,China
2. Department of Physics,University of Washington,Seattle WA 98195,USA
3. Physics Division,Argonne National Laboratory,Argonne,Illinois 60439,USA
4. Department of Physics,Peking University,Beijing 100871,China
Abstract:Two basic motivations for an upgraded JLab facility are the needs: to determine the essential nature of light-quark confinement and dynamical chiral symmetry breaking (DCSB); and to understand nucleon structure and spectroscopy in terms of QCD's elementary degrees of freedom. During the next ten years a programme of experiment and theory will be conducted that can address these questions. We present a Dyson-Schwinger equation perspective on this effort with numerous illustrations, amongst them: an interpretation of string-breaking; a symmetry-preserving truncation for mesons; the nucleon's strangeness σ-term; and the neutron's charge distribution.
Keywords:Bethe-Salpeter equations  bound-states  confinement  dynamical chiral symmetry breaking  Dyson-Schwinger equations  Faddeev equation  nucleon electromagnetic form factors
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