Instanton effects on Wilson-loop correlators: a new comparison with numerical results from the lattice
arXiv:0910.4505 · doi:10.1103/PhysRevD.81.074022
Abstract
Instanton effects on the Euclidean correlation function of two Wilson loops at an angle , relevant to soft high-energy dipole-dipole scattering, are calculated in the Instanton Liquid Model and compared with the existing lattice data. Moreover, the instanton-induced dipole-dipole potential is obtained from the same correlation function at , and compared with preliminary lattice data.
32 pages, 14 figures; version published on PRD
References in corpus (4)
- Analyticity and crossing symmetry of the eikonal amplitudes in gauge theories
- High-energy hadron-hadron (dipole-dipole) scattering from lattice QCD
- Can the pomeron be derived from a Euclidean-Minkowskian duality?
- A nonperturbative foundation of the Euclidean-Minkowskian duality of Wilson-loop correlation functions
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- Remarks on the static dipole-dipole potential at large distances
- Double Spin Asymmetries through QCD Instantons
- Renormalisation of gauge theories on general anisotropic lattices and high-energy scattering in QCD
- High-energy behavior of hadronic total cross sections from lattice QCD
- Wilson-loop formalism for Reggeon exchange at high energy