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A Comperative Study of Gauge Fixing Procedures on the Connection Machines CM2 and CM5
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Gauge fixing is a frequent task encountered in practical lattice gauge theory calculations. We review the performance characteristics of some standard gauging procedures for non-abelian gauge theories, implemented on the parallel machines CM2 and CM5.
Forward citations
Cited by 2 Pith papers
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A Machine Learning Approach for Lattice Gauge Fixing
A Wilson-line-bundle CNN generates approximate Coulomb-gauge transformations that, combined with iterative gauge fixing, reduce lattice-gauge-fixing cost by ~1–4% and transfer across lattice volumes.
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Bloch Waves, Magnetization and Domain Walls: The Case of the Gluon Propagator
Replicated-lattice gauge fixing has an exact Bloch-wave structure, giving a selection rule for nonzero gluon-propagator momenta and enabling all cost to stay on the small lattice.
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