What's new with the electroweak phase transition?

Laine M, Rummukainen K (1999)
Nuclear Physics B - Proceedings Supplements 73(1-3): 180-185.

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We review the status of non-perturbative lattice studies of the electroweak phase! transition. In the Standard Model, the complete phase diagram has been reliably determined, and the conclusion is that there is no phase transition at all for the experimentally allowed Higgs masses. In the Minimal Supersymmetric Standard Model (MSSM), in contrast, there can be a strong first order transition allowing for baryogenesis. Finally, we point out possibilities for future simulations, such as the problem of CP-violation at the MSSM electroweak phase boundary.
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Laine M, Rummukainen K. What's new with the electroweak phase transition? Nuclear Physics B - Proceedings Supplements. 1999;73(1-3):180-185.
Laine, M., & Rummukainen, K. (1999). What's new with the electroweak phase transition? Nuclear Physics B - Proceedings Supplements, 73(1-3), 180-185.
Laine, M., and Rummukainen, K. (1999). What's new with the electroweak phase transition? Nuclear Physics B - Proceedings Supplements 73, 180-185.
Laine, M., & Rummukainen, K., 1999. What's new with the electroweak phase transition? Nuclear Physics B - Proceedings Supplements, 73(1-3), p 180-185.
M. Laine and K. Rummukainen, “What's new with the electroweak phase transition?”, Nuclear Physics B - Proceedings Supplements, vol. 73, 1999, pp. 180-185.
Laine, M., Rummukainen, K.: What's new with the electroweak phase transition? Nuclear Physics B - Proceedings Supplements. 73, 180-185 (1999).
Laine, Mikko, and Rummukainen, K. “What's new with the electroweak phase transition?”. Nuclear Physics B - Proceedings Supplements 73.1-3 (1999): 180-185.
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