Testing Proposals for the Yang-Mills Vacuum Wavefunctional by Measurement of the Vacuum
arXiv:1102.3941 · doi:10.1103/PhysRevD.83.114509
Abstract
We review a method, suggested many years ago, to numerically measure the relative amplitudes of the true Yang-Mills vacuum wavefunctional in a finite set of lattice-regulated field configurations. The technique is applied in 2+1 dimensions to sets of abelian plane wave configurations of varying amplitude and wavelength, and sets of non-abelian constant configurations. The results are compared to the predictions of several proposed versions of the Yang-Mills vacuum wavefunctional that have appeared in the literature. These include (i) a suggestion in temporal gauge due to Greensite and Olejnik; (ii) the "new variables" wavefunction put forward by Karabali, Kim, and Nair; (iii) a hybrid proposal combining features of the temporal gauge and new variables wavefunctionals; and (iv) Coulomb gauge wavefunctionals developed by Reinhardt and co-workers, and by Szczepaniak and co-workers. We find that wavefunctionals which simplify to a "dimensional reduction" form at large scales, i.e. which have the form of a probability distribution for two-dimensional lattice gauge theory, when evaluated on long-wavelength configurations, have the optimal agreement with the data.
19 pages, 11 figures
References in corpus (16)
- 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
- Non-Gaussian wave functionals in Coulomb gauge Yang--Mills theory
- A precise calculation of the fundamental string tension in SU(N) gauge theories in 2+1 dimensions
- Dielectric function of the QCD vacuum
- Closed k-strings in SU(N) gauge theories : 2+1 dimensions
- The Hamiltonian Approach to Yang-Mills (2+1): An Expansion Scheme and Corrections to String Tension
- On the Glueball Spectrum of Pure Yang-Mills Theory in 2+1 Dimensions
- Dimensional Reduction and the Yang-Mills Vacuum State in 2+1 Dimensions
- The 't Hooft loop in the Hamiltonian approach to Yang-Mills theory in Coulomb gauge
- Hamiltonian Approach to 1+1 dimensional Yang-Mills theory in Coulomb gauge
- A model for QCD ground state with magnetic disorder
- The Yang-Mills Vacuum in Coulomb Gauge in D=2+1 Dimensions
- Coulomb Confinement from the Yang-Mills Vacuum State in 2+1 Dimensions
- Properties of the approximate Yang-Mills ground-state wave functional in 2+1 dimensions