Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5494269 | Nuclear Physics B | 2017 | 16 Pages |
Abstract
For the investigation of back-reactions of composite mesons in the NJL model, a variational path-integral treatment is formulated which yields an effective action Aeff[DÏ,DÏ;S], depending on the propagators DÏ, DÏ of Ïâ and Ïâmesons and on the full quark propagator S. The stationarity conditions δAeff/δS=0, δAeff/δDÏ=0, δAeff/δDÏ=0, then lead to coupled Schwinger-Dyson (SD) equations for the quark self-energy and the meson polarization functions. These results reproduce and extend results of the so-called “Φâderivable” approach and provide a functional formulation for diagrammatic resummations of 1/Ncâcorrections in the NJL model. Finally, we perform a low-momentum estimate of the quark and meson loop contributions to the polarization function of the pion and on this basis discuss the Goldstone theorem.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
D. Blaschke, D. Ebert,