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Wavelet representation of light-front quantum field theory

High Energy Physics - Theory 2020-05-20 v2 High Energy Physics - Lattice

Abstract

A formally exact discrete multi-resolution representation of quantum field theory on a light front is presented. The formulation uses an orthonormal basis of compactly supported wavelets to expand the fields restricted to a light front. The representation has a number of useful properties. First, light front preserving Poincar\'e transformations can be computed by transforming the arguments of the basis functions. The discrete field operators, which are defined by integrating the product of the field and the basis functions over the light front, represent localized degrees of freedom on the light-front hyperplane. These discrete fields are irreducible and the vacuum is formally trivial. The light-front Hamiltonian and all of the Poincar\'e generators are linear combinations of normal ordered products of the discrete field operators with analytically computable constant coefficients. The representation is discrete and has natural resolution and volume truncations like lattice formulations. Because it is formally exact it is possible to systematically compute corrections for eliminated degrees of freedom.

Keywords

Cite

@article{arxiv.2002.02311,
  title  = {Wavelet representation of light-front quantum field theory},
  author = {W. N. Polyzou},
  journal= {arXiv preprint arXiv:2002.02311},
  year   = {2020}
}

Comments

28 pages

R2 v1 2026-06-23T13:33:09.564Z