English

Supersymmetric Electroweak Phase Transition: Beyond Perturbation Theory

High Energy Physics - Phenomenology 2009-10-28 v2

Abstract

We compute the three-dimensional effective action for the minimal supersymmetric standard model, which describes the light modes of the theory near the finite-temperature electroweak phase transition, keeping the one-loop corrections from the third generation quarks and squarks. Using the lattice results of Kajantie {\it et al.}\ for the phase transition in the same class of 3-D models, we find that the strength of the phase transition is sufficient for electroweak baryogenesis, in much broader regions of parameter space than have been indicated by purely perturbative analyses. In particular we find that, while small values of tanβ\tan\beta are favored, positive results persist even for arbitrarily large values of tanβ\tan\beta if the mass of the A0A^0 boson is between 40 and 120 GeV, a region of parameters which has not been previously identified as being favorable for electroweak baryogenesis.

Keywords

Cite

@article{arxiv.hep-ph/9605235,
  title  = {Supersymmetric Electroweak Phase Transition: Beyond Perturbation Theory},
  author = {James M. Cline and Kimmo Kainulainen},
  journal= {arXiv preprint arXiv:hep-ph/9605235},
  year   = {2009}
}

Comments

22 pages, 8 figures, uses epsf; version to appear in Nucl. Phys. B; added references, corrected sign errors in eq. 13; results qualitatively unchanged except for distribution of A_t parameter

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