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Author (up) Alkofer, R.; Ferreira, M.N.; Miramontes, A.S.; Morgado, J.M.; Papavassiliou, J. url  doi
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  Title Real poles with opposite-sign residues in the non-perturbative quark propagator Type Journal Article
  Year 2026 Publication Physics Letters B Abbreviated Journal Phys. Lett. B  
  Volume 880 Issue Pages 140856 - 10pp  
  Keywords Schwinger-Dyson equations; Quark propagator; Non-perturbative QCD  
  Abstract We investigate the analytic structure of the quark propagator in the Landau gauge by dynamically coupling the standard gap equation to the non-perturbative quark-gluon vertex. Employing the full vertex basis, we demonstrate that for sub-GeV time-like momenta, the proper inclusion of the underlying dynamics leads to a pair of real poles with opposite-sign residues. In particular, in stark contradistinction to the results obtained in widely used approximations, we see no sign of complex conjugate poles. This distinctive analytic structure evades conceptual shortcomings frequently associated with complex conjugate poles while remaining fully compatible with the aspects of color confinement related to positivity violation. Crucially, this novel behavior is governed by a dominant triplet of vertex form factors: the tree-level component, the anomalous chromomagnetic moment, and a component we label as “spin-momentum curvature”. By gradually tuning the individual strengths of these components, we demonstrate that while they contribute in distinct ways to the quark propagator, their joint action is vital for stabilizing the system. Together, they place the low-lying poles onto the real axis while producing a robust constituent quark mass of 350 MeV.  
  Address [Alkofer, R.] Karl Franzens Univ Graz, NAWI Graz, Inst Phys, Univ Pl 5, A-8010 Graz, Austria, Email: angel.s.miramontes@uv.es  
  Corporate Author Thesis  
  Publisher Elsevier Place of Publication Editor  
  Language English Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 0370-2693 ISBN Medium  
  Area Expedition Conference  
  Notes WOS:001857694000001 Approved no  
  Is ISI yes International Collaboration yes  
  Call Number IFIC @ pastor @ Serial 7409  
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