On the infrared scaling solution of SU(N) Yang-Mills theories in the maximally Abelian gauge
arXiv:0904.1873 · doi:10.1140/epjc/s10052-010-1371-x
Abstract
An improved method for extracting infrared exponents from functional equations is presented. The generalizations introduced allow for an analysis of quite complicated systems such as Yang-Mills theory in the maximally Abelian gauge. Assuming the absence of cancellations in the appropriately renormalized integrals the only consistent scaling solution yields an infrared enhanced diagonal gluon propagator in support of the Abelian dominance hypothesis. This is explicitly shown for SU(2) and subsequently verified for SU(N), where additional interactions exist. We also derive the most infrared divergent scaling solution possible for vertex functions in terms of the propagators' infrared exponents. We provide general conditions for the existence of a scaling solution for a given system and comment on the cases of linear covariant gauges and ghost anti-ghost symmetric gauges.
23 pages, 10 figures; version coincides with version published in EPJC
References in corpus (28)
- A refinement of the Gribov-Zwanziger approach in the Landau gauge: infrared propagators in harmony with the lattice results
- Gluon and ghost propagators in the Landau gauge: Deriving lattice results from Schwinger-Dyson equations
- Infrared Properties of QCD from Dyson-Schwinger equations
- Lattice gluodynamics computation of Landau-gauge Green's functions in the deep infrared
- Constraints on the IR behavior of the gluon propagator in Yang-Mills theories
- New features of the gluon and ghost propagator in the infrared region from the Gribov-Zwanziger approach
- Constraints on the IR behavior of the ghost propagator in Yang-Mills theories
- The quark-gluon vertex in Landau gauge QCD: Its role in dynamical chiral symmetry breaking and quark confinement
- Three-point vertices in Landau-gauge Yang-Mills theory
- Uniqueness of infrared asymptotics in Landau gauge Yang-Mills theory II
- Uniqueness of infrared asymptotics in Landau gauge Yang-Mills theory
- Infrared behaviour of the ghost-gluon vertex in Landau gauge Yang-Mills theory
- Constructing non-perturbative gauges using correlation functions
- More on Gribov copies and propagators in Landau-gauge Yang-Mills theory
- The infrared behavior of Landau gauge Yang-Mills theory in d=2, 3 and 4 dimensions
- Just how different are SU(2) and SU(3) Landau-gauge propagators in the IR regime?
- Infrared behavior and Gribov ambiguity in SU(2) lattice gauge theory
- The running coupling from the four-gluon vertex in Landau gauge Yang-Mills theory
- The gluon and ghost propagators in Euclidean Yang-Mills theory in the maximal Abelian gauge: taking into account the effects of the Gribov copies and of the dimension two condensates
- Infrared analysis of Dyson-Schwinger equations taking into account the Gribov horizon in Landau gauge
- A study of the maximal Abelian gauge in SU(2) Euclidean Yang-Mills theory in the presence of the Gribov horizon
- Study of the properties of the Gribov region in SU(N) Euclidean Yang-Mills theories in the maximal Abelian gauge
- Gauge invariance of color confinement due to the dual Meissner effect caused by Abelian monopoles
- Study of the Gribov region in Euclidean Yang-Mills theories in the maximal Abelian gauge
- On the Infrared Behavior of Landau Gauge Yang-Mills Theory with a Fundamentally Charged Scalar Field
- A first look at Landau-gauge propagators in G2 Yang-Mills theory
- Solving a Set of Truncated Dyson-Schwinger Equations with a Globally Converging Method
- Lattice Landau gauge with stochastic quantisation
Cited by in corpus (28)
- QCD and strongly coupled gauge theories: challenges and perspectives
- The QCD Running Coupling
- Gauge bosons at zero and finite temperature
- The Infrared Behaviour of the Pure Yang-Mills Green Functions
- Correlation functions of Landau gauge Yang-Mills theory
- Gauge Sector Dynamics in QCD
- On gluon and ghost propagators in linear covariant gauges
- Algorithmic derivation of functional renormalization group equations and Dyson-Schwinger equations
- Two- and three-point functions in two-dimensional Landau-gauge Yang-Mills theory: Continuum results
- Correlation functions of three-dimensional Yang-Mills theory from Dyson-Schwinger equations
- Off-diagonal Gluon Mass Generation and Infrared Abelian Dominance in Maximally Abelian Gauge in SU(3) Lattice QCD
- CrasyDSE: A framework for solving Dyson-Schwinger equations
- DoFun 3.0: Functional equations in Mathematica
- Gluon Propagators in Maximally Abelian Gauge in SU(3) Lattice QCD
- Hamiltonian Flow in Coulomb Gauge Yang-Mills Theory
- Features of ghost-gluon and ghost-quark bound states related to BRST quartets
- Infrared Saturation and Phases of Gauge Theories with BRST Symmetry
- Yang-Mills propagators in linear covariant gauges from Nielsen identities
- Gribov horizon and non-perturbative BRST symmetry in the maximal Abelian gauge
- Two infrared Yang-Mills solutions in stochastic quantization and in an effective action formalism
- Gribov-Zwanziger action in SU(2) Maximally Abelian Gauge with U(1) Landau Gauge
- Dimension two condensates in the Gribov-Zwanziger theory in the Coulomb gauge
- A study of the influence of the gauge group on the Dyson-Schwinger equations for scalar-Yang-Mills systems
- Spectral dimension as a tool for analyzing non-perturbative propagators
- MOM renormalization group functions in the maximal abelian gauge
- Maximal abelian and Curci-Ferrari gauges in momentum subtraction at three loops
- Lattice QCD Green's functions in maximally Abelian gauge: infrared Abelian dominance and the quark sector
- Dyson-Schwinger equations and SYM in Landau gauge