Hadronic Observables from Dyson-Schwinger and Bethe-Salpeter equations
arXiv:1503.05896 · doi:10.1088/1742-6596/631/1/012064
Abstract
In these proceedings we present a mini-review on the topic of the Dyson-Schwinger/Bethe-Salpeter approach to the study of relativistic bound-states in physics. In particular, we present a self-contained discussion of their derivation, as well as their truncation such that important symmetries are maintained.
15 pages. Talk given at Discrete 2014 - Fourth Symposium on Prospects in the Physics of Discrete Symmetries. 2-6 December, 2014 - King's College, London, England. Version with corrected typos and additional/updated references
References in corpus (6)
- Sketching the Bethe-Salpeter kernel
- Basic features of the pion valence-quark distribution function
- Spectra of heavy mesons in the Bethe-Salpeter approach
- Mass spectra and Regge trajectories of light mesons in the Bethe-Salpeter approach
- Hadron Physics and the Dyson--Schwinger Equations of QCD
- Hadronic bound-states in SU(2) from Dyson--Schwinger Equations
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- Small parameters in infrared quantum chromodynamics
- Spectrum of scalar and pseudoscalar glueballs from functional methods
- The analytic properties of the quark propagator from an effective infrared interaction model
- Effects of a dressed quark-gluon vertex in vector heavy-light mesons and theory average of B(c)* meson mass
- Probing the quark-gluon interaction with hadrons
- Bound state properties from the Functional Renormalisation Group
- Higher spin glueballs from functional methods
- Effects of a dressed quark-gluon vertex in pseudoscalar heavy-light mesons
- Hyperon elastic electromagnetic form factors in the space-like momentum region
- Light-quarkonium spectra and orbital-angular-momentum decomposition in a Bethe-Salpeter-equation approach
- Progress in the calculation of nucleon transition form factors
- Charming quasi-exotic open-flavor mesons
- Poincare covariant pseudoscalar and scalar meson spectroscopy in Wigner-Weyl phase
- Quasi-exotic open-flavor mesons
- Deep reinforcement learning for complex evaluation of one-loop diagrams in quantum field theory
- A comprehensive approach to the physics of mesons
- On the low-energy spectrum of an SU(2) gauge theory with dynamical fermions
- Gauge Technique approximation to the production and the pion transition form factor
- A window on infrared QCD with small expansion parameters
- Electromagnetic transition form factors of baryons in a relativistic Faddeev approach
- Glueballs from bound state equations
- S- and D-wave vector charmonia