The order of the phase transition in 3d U(1)+Higgs theory

Karjalainen M, Laine M, Peisa J (1997)
Nuclear Physics B 53(1-3): 475-478.

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We study the order of the phase transition in the 3d U(1)+Higgs theory, which is the Ginzburg-Landau theory of superconductivity. We confirm that for small scalar self-coupling the transition is of first order. For large scalar self-coupling the transition ceases to be of first order, and a non-vanishing scalar mass suggests that the transition may even be of higher than second order.
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Karjalainen M, Laine M, Peisa J. The order of the phase transition in 3d U(1)+Higgs theory. Nuclear Physics B. 1997;53(1-3):475-478.
Karjalainen, M., Laine, M., & Peisa, J. (1997). The order of the phase transition in 3d U(1)+Higgs theory. Nuclear Physics B, 53(1-3), 475-478.
Karjalainen, M., Laine, M., and Peisa, J. (1997). The order of the phase transition in 3d U(1)+Higgs theory. Nuclear Physics B 53, 475-478.
Karjalainen, M., Laine, M., & Peisa, J., 1997. The order of the phase transition in 3d U(1)+Higgs theory. Nuclear Physics B, 53(1-3), p 475-478.
M. Karjalainen, M. Laine, and J. Peisa, “The order of the phase transition in 3d U(1)+Higgs theory”, Nuclear Physics B, vol. 53, 1997, pp. 475-478.
Karjalainen, M., Laine, M., Peisa, J.: The order of the phase transition in 3d U(1)+Higgs theory. Nuclear Physics B. 53, 475-478 (1997).
Karjalainen, M, Laine, Mikko, and Peisa, J. “The order of the phase transition in 3d U(1)+Higgs theory”. Nuclear Physics B 53.1-3 (1997): 475-478.
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