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Static potential, force, and flux-tube profile in 4D compact U(1) lattice gauge theory with the multi-level algorithm

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arxiv hep-lat/0311016 v2 pith:6FNYIZ2U submitted 2003-11-11 hep-lat hep-th

Static potential, force, and flux-tube profile in 4D compact U(1) lattice gauge theory with the multi-level algorithm

classification hep-lat hep-th
keywords staticflux-tubepotentialprofilealgorithmcompactcorrectionforce
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The long range properties of four-dimensional compact U(1) lattice gauge theory with the Wilson action in the confinement phase is studied by using the multi-level algorithm. The static potential, force and flux-tube profile between two static charges are successfully measured from the correlation function involving the Polyakov loop. The universality of the coefficient of the 1/r correction to the static potential, known as the Luescher term, and the transversal width of the flux-tube profile as a function of its length are investigated. While the result supports the presence of the 1/r correction, the width of the flux tube shows an almost constant behavior at a large distance.

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  1. Intrinsic Width of the Flux Tube as a tool to explore confining mechanisms in Lattice Gauge Theories

    hep-lat 2026-01 unverdicted novelty 5.0

    Lattice data on the intrinsic width of SU(2) flux tubes in 2+1D distinguish confining models, favoring dual superconductor at low T but with length-dependent Ginzburg-Landau parameter.