QCD at finite temperature and chemical potential from Dyson–Schwinger equations
CS Fischer - Progress in Particle and Nuclear Physics, 2019 - Elsevier
We review results for the phase diagram of QCD, the properties of quarks and gluons and
the resulting properties of strongly interacting matter at finite temperature and chemical …
the resulting properties of strongly interacting matter at finite temperature and chemical …
The infrared behaviour of QCD Green's functions: confinement, dynamical symmetry breaking, and hadrons as relativistic bound states
Recent studies of QCD Green's functions and their applications in hadronic physics are
reviewed. We discuss the definition of the generating functional in gauge theories, in …
reviewed. We discuss the definition of the generating functional in gauge theories, in …
Baryons as relativistic three-quark bound states
We review the spectrum and electromagnetic properties of baryons described as relativistic
three-quark bound states within QCD. The composite nature of baryons results in a rich …
three-quark bound states within QCD. The composite nature of baryons results in a rich …
Dyson–Schwinger equations: a tool for hadron physics
P Maris, CD Roberts - International Journal of Modern Physics E, 2003 - World Scientific
Dyson–Schwinger equations furnish a Poincaré covariant framework within which to study
hadrons. A particular feature is the existence of a nonperturbative, symmetry preserving …
hadrons. A particular feature is the existence of a nonperturbative, symmetry preserving …
Infrared properties of QCD from Dyson–Schwinger equations
CS Fischer - Journal of Physics G: Nuclear and Particle Physics, 2006 - iopscience.iop.org
I review recent results on the infrared properties of QCD from Dyson–Schwinger equations.
The topics include infrared exponents of one-particle irreducible Green's functions, the fixed …
The topics include infrared exponents of one-particle irreducible Green's functions, the fixed …
Three-gluon vertex in Landau gauge
We present the first Dyson–Schwinger calculation of the three-gluon vertex in Landau-
gauge QCD in which its full covariant structure is back-coupled self-consistently. We truncate …
gauge QCD in which its full covariant structure is back-coupled self-consistently. We truncate …
Valence-quark distributions in the pion
We calculate the pion's valence-quark momentum-fraction probability distribution using a
Dyson-Schwinger equation model. Valence quarks with an active mass of 0.30 GeV carry …
Dyson-Schwinger equation model. Valence quarks with an active mass of 0.30 GeV carry …
Hadron properties and Dyson–Schwinger equations
CD Roberts - Progress in Particle and Nuclear Physics, 2008 - Elsevier
An overview of the theory and phenomenology of hadrons and QCD is provided from a
Dyson–Schwinger equation viewpoint. Following a discussion of the definition and …
Dyson–Schwinger equation viewpoint. Following a discussion of the definition and …
Nucleon and Elastic and Transition Form Factors
We present a unified study of nucleon and\({\Delta}\) elastic and transition form factors, and
compare predictions made using a framework built upon a Faddeev equation kernel and …
compare predictions made using a framework built upon a Faddeev equation kernel and …
Nucleon mass from a covariant three-quark Faddeev equation
We report the first study of the nucleon where the full Poincaré-covariant structure of the
three-quark amplitude is implemented in the Faddeev equation. We employ an interaction …
three-quark amplitude is implemented in the Faddeev equation. We employ an interaction …