arXiv · hep-th/9312165
Current commutator anomalies in finite-element quantum electrodynamics
Abstract
Four-dimensional quantum electrodynamics has been formulated on a hypercubic Minkowski finite-element lattice. The equations of motion have been derived so as to preserve lattice gauge invariance and have been shown to be unitary. In addition, species doubling is avoided due to the nonlocality of the interactions. The model is used to investigate the lattice current algebra. Regularization of the current is shown to arise in a natural and nonarbitrary way. The commutators of the lattice current are calculated and shown to have the expected qualitative behavior. These lattice results are compared to various continuum calculations. (Five figures available from author.)
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Dean F. Miller. 1993-12-20. Current commutator anomalies in finite-element quantum electrodynamics. https://doi.org/10.1016/0920-5632(94)90510-x
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