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arXiv:hep-lat/9410004·v1·High Energy Physics — Lattice

Universality and the Deconfinement Phase Transition in SU(2) Lattice Gauge Theory

Manu Mathur🇮🇳 · Rajiv V. Gavai🇮🇳

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Abstract

We study the three dimensional fundamental-adjoint lattice gauge theory at non-zero temperatures by Monte Carlo simulations. On an lattice, at , where is the adjoint coupling, we find no evidence of any transition at the location of a previously known bulk phase transition around . Moreover, the deconfinement transition at occurs at and is of first order for , thus implying a change of universality class from that of the Wilson action at . Computations of the plaquette susceptibility and the temporal and spatial Polyakov loops on and lattices at further support these conclusions and suggest that the previously claimed bulk transition around is, in fact, the first order deconfinement transition. Simulations at larger and the measurements of the mass gaps from the correlation functions of temporal and spatial Polyakov loops also confirm the temperature dependent nature of the above transition. The consequences of our results on universality are discussed.

Comments: 26 pages + 10 Figures (included as uuencoded FIFURES.uu file at the end), Latex, BI-TP 94/52, TIFR/TH/94-31

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