Color Coulomb Potential in Yang-Mills Theory from Hamiltonian Flows
arXiv:1105.0800 · doi:10.1103/PhysRevD.86.107702
Abstract
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 solution that results in an almost linearly rising confining potential.
6 pages, 4 figures
References in corpus (8)
- Exact evolution equation for the effective potential
- Variational solution of the Yang-Mills Schrödinger equation in Coulomb gauge
- On the Yang-Mills wave functional in Coulomb gauge
- Confining Solution of the Dyson-Schwinger Equations in Coulomb Gauge
- Subcritical solution of the Yang-Mills Schroedinger equation in the Coulomb gauge
- Infrared analysis of propagators and vertices of Yang--Mills theory in Landau and Coulomb gauge
- Dielectric function of the QCD vacuum
- Hamiltonian Flow in Coulomb Gauge Yang-Mills Theory