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      Interface tension in SU(3) lattice gauge theory at finite temperatures on an Nt=2 lattice

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          Abstract

          The surface tension σ of the confined-deconfined interface is calculated in pure SU(3) lattice gauge theory at finite temperatures employing the operator and integral methods on a lattice of a size 82×Nz×2 with Nz=16 and 40. Analyses of non-perturbative corrections in asymmetry response functions strongly indicate that the use of one-loop values for the response functions lead to an overestimate of σ in the operator method. The operator method also suffers more from finite-size effects due to a finite thickness of the interface, leading us to conclude that the integral method yields more reliable values for σ. Our result with the integral method σ/T3c=0.134(16) is consistent with earlier results and also with that obtained with a transfer matrix method. Result is also reported on σ obtained on a lattice 182×48×4 with the integral method.

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          Finite-temperature phase transition of SU(3) gauge theory onNt=4 and 6lattices

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            Surface tension in finite-temperature quantum chromodynamics

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              Simple and efficient procedure for the Monte Carlo calculation of the surface free energy in coexisting phases

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                Author and article information

                Journal
                1993-12-13
                Article
                10.1103/PhysRevD.50.6921
                hep-lat/9312052
                22a1a412-f8d2-4d10-b1fd-61498dba8486
                History
                Custom metadata
                Phys.Rev. D50 (1994) 6921-6930
                27 pages with 13 PS figures, LaTeX, UTHEP-257
                hep-lat

                High energy & Particle physics
                High energy & Particle physics

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