PaperPanorama

Nuclear Theory·nucl-th

Thursday·December 6, 2018

10 papers7 primary·3 cross-listed

  1. 08

    Interplay of dynamical and explicit chiral symmetry breaking effects on a quark

    Fernando E. Serna🇧🇷 · Chen Chen🇧🇷 · Bruno El-Bennich🇧🇷

    The relative contributions of explicit and dynamical chiral symmetry breaking in QCD models of the quark-gap equation are studied in dependence of frequently employed ansätze for the dressed interaction and quark-gluon vertex. The explicit symmetry breaking contributions are defined by a constituent-quark sigma term whereas the combined effects of explicit and dynamical symmetry breaking are described by a Euclidean constituent-mass solution. We extend this study of the gap equation to a quark-gluon vertex beyond the Abelian approximation complemented with numerical gluon- and ghost-dressing functions from lattice QCD. We find that the ratio of the sigma term over the Euclidean mass is largely independent of nonperturbative interaction and vertex models for current-quark masses, , and equal contributions of explicit and dynamical chiral symmetry breaking occur at ~MeV. For massive solutions of the gap equation with lattice propagators this value decreases to about 200~MeV.

    hep-phnucl-thPRD(2019)·30 citations
  2. 09

    Baryonic or quarkyonic matter?

    Owe Philipsen🇩🇪 · Jonas Scheunert🇩🇪

    During the last years it has become possible to address the cold and dense regime of QCD directly for sufficiently heavy quarks, where combined strong coupling and hopping expansions are convergent and a 3d effective theory can be derived, which allows to control the sign problem either in simulations or by fully analytic calculations. In this contribution we review the effective theory and study the -dependence of the nuclear liquid gas transition, as well as the equation of state of baryonic matter in the strong coupling limit. We find the transition to become more strongly first order with growing , suggesting that in the large limit its critical endpoint moves to high temperatures to connect with the deconfinement transition. Furthermore, to leading and next-to-leading order in the strong coupling and hopping expansions, respectively, the pressure is found to scale as . This suggests that baryonic and quarkyonic matter might be the same at nuclear densities. Further work is needed to see whether this result is stable under gauge corrections.

    hep-lathep-phnucl-thPoS(2018)·5 citations
  3. 10

    The Roper resonance as a meson-baryon molecular state

    B. Golli🇸🇮

    The recently proposed mechanism for the formation of the Roper resonance, in which a dynamically generated state as well as a genuine three-quark resonant state play an equally important role, is confronted with the model proposed almost twenty years ago in which the Roper is pictured as a molecular state of the nucleon and the meson.

    hep-phnucl-thBled Workshops Phys.(2018)·0 citations

Affiliations

first authorsco-authorsvia INSPIRE