PaperPanorama

Nuclear Theory·nucl-th

Thursday·February 1, 2018

10 papers2 primary·8 cross-listed

  1. 01

    Process-independent effective coupling. From QCD Green's functions to phenomenology

    Jose Rodríguez-Quintero🇪🇸 · Daniele Binosi🇮🇹 · Cédric Mezrag🇮🇹 · Joannis Papavassiliou🇪🇸 · Craig D. Roberts🇺🇸

    This article reports on a very recent proposal for a new type of process-independent QCD effective charge [Phys.Rev.D96(2017)054026] defined, as an anologue of the Gell-Mann-Low effective charge in QCD, on the ground of nothing but the knowledge of the gauge-field two-point Green's function, albeit modified within a particular computational framework; namely, the combination of pinch technique and background field method which makes possible a systematic rearranging of classes of diagrams in order to redefine the Green's function and have them obey linear QED-like Slavnov-Taylor identities. We have here calculated that effective charge, shown how strikingly well it compares to a process-dependent effective charge based on the Bjorken sum rule; and, finally, employed it in an exploratory calculation of the proton electromagnetic form factor in the hard scattering regime.

    nucl-thFew Body Syst.(2018)·58 citations
  2. 02

    The impact of photoproduction on the resonance spectrum

    D. Rönchen🇩🇪 · M. Döring🇺🇸 · U.-G. Meißner🇩🇪

    The Jülich-Bonn coupled-channel framework is extended to photoproduction. The spectrum of nucleon and resonances is extracted from simultaneous fits to several pion-induced reactions in addition to pion, eta and photoproduction off the proton. More than 40,000 data points up to a center-of-mass energy of E2.3 GeV including recently measured double-polarization observables are analyzed. The influence of the channel on the extracted resonance parameters and the appearance of states not seen in other channels is investigated. The Jülich-Bonn model includes effective three-body channels and guarantees unitarity and analyticity, which is a prerequisite for a reliable determination of the resonance spectrum in terms of poles and residues.

    nucl-thhep-phnucl-exEPJA(2018)·60 citations

Affiliations

first authorsco-authorsvia INSPIRE