English

Critical Bubbles and Fluctuations at the Electroweak Phase Transition

High Energy Physics - Phenomenology 2009-10-28 v1

Abstract

We discuss the critical bubbles of the electroweak phase transition using an effective high-temperature 3-dimensional action for the Higgs field φ\varphi. The separate integration of gauge and Goldstone boson degrees of freedom is conveniently described in the 't Hooft-Feynman covariant background gauge. The effective dimensionless gauge coupling g3(T)2g_3(T)^2 in the broken phase is well behaved throughout the phase transition. However, the behavior of the one-loop Z(φ)Z(\varphi) factors of the Higgs and gauge kinetic terms signalizes the breakdown of the derivative expansion and of the perturbative expansion for a range of small φ\varphi values increasing with the Higgs mass mHm_H. Taking a functional Sz[φ]S_z[\varphi] with constant Z(φ)=zZ(\varphi)=z instead of the full non-local effective action in some neighborhood of the saddlepoint we are calculating the critical bubbles for several temperatures. The fluctuation determinant is calculated to high accuracy using a variant of the heat kernel method. It gives a strong suppression of the transition rate compared to previous estimates.

Keywords

Cite

@article{arxiv.hep-ph/9405225,
  title  = {Critical Bubbles and Fluctuations at the Electroweak Phase Transition},
  author = {J. Kripfganz and A. Laser and M. G. Schmidt},
  journal= {arXiv preprint arXiv:hep-ph/9405225},
  year   = {2009}
}

Comments

HD-THEP-94-13 30 pages, 10 figures included at the end, LaTeX, epsf.sty

R2 v1 2026-07-22T14:20:52.910Z