Deconfinement for SU(2) gauge theory in 2+1 dimensions

Engels J, Kehl E, Satz H, Waltl B (1985)
Physical review letters 55(26): 2839-2841.

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By calculating Polyakov-loop averages on a 60 2×2 lattice, we determine the critical exponent of deconfinement for SU(2) gauge theory in 2+1 dimensions. Universality arguments predict it to be the same as the critical exponent [beta]=(1/8) for the spontaneous magnetization in the two-dimensional Ising model. Our results are in good accord with this prediction.
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Engels J, Kehl E, Satz H, Waltl B. Deconfinement for SU(2) gauge theory in 2+1 dimensions. Physical review letters. 1985;55(26):2839-2841.
Engels, J., Kehl, E., Satz, H., & Waltl, B. (1985). Deconfinement for SU(2) gauge theory in 2+1 dimensions. Physical review letters, 55(26), 2839-2841.
Engels, J., Kehl, E., Satz, H., and Waltl, B. (1985). Deconfinement for SU(2) gauge theory in 2+1 dimensions. Physical review letters 55, 2839-2841.
Engels, J., et al., 1985. Deconfinement for SU(2) gauge theory in 2+1 dimensions. Physical review letters, 55(26), p 2839-2841.
J. Engels, et al., “Deconfinement for SU(2) gauge theory in 2+1 dimensions”, Physical review letters, vol. 55, 1985, pp. 2839-2841.
Engels, J., Kehl, E., Satz, H., Waltl, B.: Deconfinement for SU(2) gauge theory in 2+1 dimensions. Physical review letters. 55, 2839-2841 (1985).
Engels, Jürgen, Kehl, E., Satz, Helmut, and Waltl, B. “Deconfinement for SU(2) gauge theory in 2+1 dimensions”. Physical review letters 55.26 (1985): 2839-2841.
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Critical-index calculation from Monte Carlo data with use of finite-size scaling and optimization.
Gunduc Y, Tarhan O, Sever R., Phys. Rev., B Condens. Matter 48(13), 1993
PMID: 10007241
Conformal invariance at a deconfinement phase transition in (2+1) dimensions.
Christensen J, Damgaard PH., Phys. Rev. Lett. 65(20), 1990
PMID: 10042612
Critical exponents of SU(2) gauge theory in 2+1 dimensions.
Kehl E, Miller D, Satz H, Waltl B., Phys. Rev., D 38(6), 1988
PMID: 9959348

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