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The Yang-Mills Schr\"odinger equation is variationally solved in Coulomb gauge for the vacuum sector using a trial wave functional, which is strongly peaked at the Gribov horizon. We find the absence of gluons in the infrared and also a…

High Energy Physics - Theory · Physics 2007-05-23 C. Feuchter , H. Reinhardt

The Yang-Mills Schr\"odinger equation is solved in Coulomb gauge for the vacuum by the variational principle using an ansatz for the wave functional, which is strongly peaked at the Gribov horizon. A coupled set of Schwinger-Dyson equations…

High Energy Physics - Theory · Physics 2008-11-26 C. Feuchter , H. Reinhardt

The Yang-Mills Schr\"odinger equation is solved in Coulomb gauge for the vacuum by the variational principle using an ansatz for the wave functional, which is strongly peaked at the Gribov horizon. We find an infrared suppressed gluon…

High Energy Physics - Theory · Physics 2009-11-10 D. Epple , C. Feuchter , H. Reinhardt

The canonical recursive Dyson--Schwinger equations for the three-gluon and ghost-gluon vertices are solved numerically. The employed truncation includes several previously neglected diagrams and includes back-coupling effects. We find an…

High Energy Physics - Phenomenology · Physics 2015-02-18 Markus Q. Huber , Davide R. Campagnari , Hugo Reinhardt

The Dyson-Schwinger equation for the ghost-gluon vertex of the Hamiltonian approach to Yang-Mills theory in Coulomb gauge is solved at one-loop level using as input the non-perturbative ghost and gluon propagators previously determined…

High Energy Physics - Theory · Physics 2015-06-03 Davide R. Campagnari , Hugo Reinhardt

A new functional renormalization group equation for Hamiltonian Yang-Mills theory in Coulomb gauge is presented and solved for the static gluon and ghost propagators under the assumption of ghost dominance. The results are compared to those…

High Energy Physics - Theory · Physics 2011-06-15 Hugo Reinhardt , Markus Leder , Jan M. Pawlowski , Axel Weber

In the Hamiltonian approach to Coulomb gauge Yang-Mills theory, the functional Schroedinger equation is solved variationally resulting in a set of coupled Dyson-Schwinger equations. These equations are solved self-consistently in the…

High Energy Physics - Theory · Physics 2008-11-26 D. Epple , H. Reinhardt , W. Schleifenbaum , A. P. Szczepaniak

Although nonperturbative functional methods are often associated with low energy Quantum Chromodynamics, contemporary studies indicate that they provide reliable tools to characterize a much wider spectrum of strongly interacting many-body…

High Energy Physics - Phenomenology · Physics 2015-06-15 Carina Popovici

Within the Hamiltonian approach in Coulomb gauge the ghost and gluon propagators are determined from a variational solution of the Yang-Mills Schroedinger equation showing both gluon and heavy quark confinement. The continuum results are in…

High Energy Physics - Theory · Physics 2008-07-31 H. Reinhardt , D. Campagnari , D. Epple , M. Leder , M. Pak , W. Schleifenbaum

We present the current status of ongoing efforts to use functional methods, Dyson-Schwinger equations and functional renormalization group equations, for the description of the infrared regime of nonabelian (pure) gauge theories in the…

High Energy Physics - Theory · Physics 2011-06-21 A. Weber , M. Leder , J. M. Pawlowski , H. Reinhardt

The variational approach to the Hamilton formulation of Yang-Mills theory in Coulomb gauge developed by the present authors previously is applied to Yang-Mills theory in 2+1 dimensions and is confronted with the existing lattice data. We…

High Energy Physics - Theory · Physics 2008-11-26 C. Feuchter , H. Reinhardt

Within the Hamiltonian approach to Yang-Mills theory in Coulomb gauge the ghost and gluon propagators are determined from a variational solution of the Yang-Mills Schroedinger equation showing both gluon and heavy quark confinement. The…

High Energy Physics - Theory · Physics 2009-06-25 H. Reinhardt , G . Burgio , D. Campagnari , D. Epple , M. Leder , M. Pak , M. Quandt , W. Schleifenbaum

The quark sector of Coulomb gauge quantum chromodynamics is considered within the functional integral approach. The quark contributions to the Dyson-Schwinger equations are derived and one-loop perturbative results for the two-point…

High Energy Physics - Phenomenology · Physics 2011-06-06 Carina Popovici

I present some new results regarding confinement as it appears in Coulomb gauge. It is found that: i) a recently proposed Yang-Mills vacuum wavefunctional in temporal gauge and 2+1 dimensions yields a Coulomb-gauge ghost propagator and…

High Energy Physics - Lattice · Physics 2011-07-14 Jeff Greensite

In the first part of this thesis a coupled truncated set of Dyson-Schwinger equations (DSEs) including the one for the gluon-propagator is solved self-consistently over the whole momentum range. In Landau gauge the truncation of the coupled…

High Energy Physics - Theory · Physics 2014-12-22 Valentin Mader

A general method to treat non-Gaussian vacuum wave functionals in the Hamiltonian formulation of a quantum field theory is presented. By means of Dyson--Schwinger techniques, the static Green functions are expressed in terms of the kernels…

High Energy Physics - Theory · Physics 2010-12-21 Davide R. Campagnari , Hugo Reinhardt

The general method for treating non-Gaussian wave functionals in the Hamiltonian formulation of a quantum field theory, which was previously developed and applied to Yang--Mills theory in Coulomb gauge, is generalized to full QCD. The…

High Energy Physics - Theory · Physics 2013-01-09 Davide Campagnari , Hugo Reinhardt

In lattice QCD, a confining potential for a static quark-antiquark pair can be computed with the Wilson loop technique. This potential, dominated by a linear potential at moderate distances, is consistent with the confinement with a flux…

High Energy Physics - Lattice · Physics 2011-07-14 P. Bicudo , G. Marques , M. Cardoso , N. Cardoso , O. Oliveira

We consider the Hamiltonian formulation of Yang-Mills theory in the Coulomb gauge and apply the recently developed technique of Hamiltonian flows. We formulate a flow equation for the color Coulomb potential which allows for a scaling…

High Energy Physics - Theory · Physics 2013-05-30 Markus Leder , Hugo Reinhardt , Axel Weber , Jan M. Pawlowski

A numerical study of the ghost Dyson-Schwinger equation in Coulomb gauge is performed and solutions for the ghost propagator found. As input, lattice results for the spatial gluon propagator are used. It is shown that in order to solve…

High Energy Physics - Theory · Physics 2010-12-24 Peter Watson , Hugo Reinhardt
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