EPJ Web of Conferences · 2022 · 14 citations · 11 references
Numerical AnalysisEngineeringStatic Quark-antiquark PairComputational MechanicsStatistical Field TheoryNumerical ComputationNumerical SimulationStatic ForceHigh Temperature QcdQuantum ChromodynamicsPhysicsStatic PotentialGradient Flow AlgorithmQuantum Field TheoryNon-perturbative QcdNatural SciencesParticle PhysicsCondensed Matter PhysicsApplied PhysicsLattice Field Theory
We explore a novel approach to compute the force between a static quark-antiquark pair with the gradient flow algorithm on the lattice. The approach is based on inserting a chromoelectric field in a Wilson loop. The renormalization issues, associated with the finite size of the chromoelectric field on the lattice, can be solved with the use of gradient flow. We compare numerical results for the flowed static potential to our previous measurement of the same observable without a gradient flow.
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Spin-dependent potentials from lattice QCD
Yoshiaki Koma, Miho Koma · Nuclear Physics B · 2007 · 105 citations · Full text
Quantum Lattice System, Engineering, Spin-dependent Potentials +6
The lattice gradient flow at tree-level and its improvement
Zoltán Fodor, Kieran Holland, Julius Kuti et al. · Journal of High Energy Physics · 2014 · 103 citations · Full text