The dynamics of five dimensional Wilson line phases at finite temperature is studied in the one-loop approximation. We show that at temperatures of order T \sim 1/L, where L is the length of the compact space, the gauge symmetry is always restored and the electroweak phase transition appears to be of first order. Particular attention is devoted to the study of a recently proposed five dimensional orbifold model (on S1/Z2) where the Wilson line phase is identified with the Higgs field (gauge-Higgs unification). Interestingly enough, an estimate of the leading higher-loop ``daisy'' (or ``ring'') diagram contributions to the effective potential in a simple five dimensional model, seems to suggest that the electroweak phase transition can be st...
We present a detailed analysis of the phase transition in the standard model at finite temperature. ...
We present a detailed analysis of the phase transition in the standard model at finite temperature. ...
Kajantie K, Laine M, Rummukainen K, Shaposhnikov M. The electroweak phase transition: A non-perturba...
The dynamics of five dimensional Wilson line phases at finite temperature is studied in the one-loo...
The dynamics of five dimensional Wilson line phases at finite temperature is studied in the one-loop...
The dynamics of five dimensional Wilson line phases at finite temperature is studied in the oneloop ...
We study the finite temperature electroweak transition with non-perturbative lattice Monte Carlo sim...
33 pages, 8 figuresInternational audienceWe compute the complete one-loop finite temperature effecti...
We compute the complete one-loop finite temperature effective potential for elec-troweak symmetry br...
The electroweak phase transition is investigated by means of the perturbatively calculated high temp...
The electroweak phase transition is investigated by means of the perturbatively calculated high temp...
We study the bulk mass effects on the electroweak phase transition at finite temperature in a five d...
The finite temperature electroweak phase transition is studied on the lattice. The results of the si...
The electroweak phase transition at finite temperature is investigated in numerical simulations of t...
AbstractWe present a non-perturbative model of Gauge-Higgs Unification. We consider a five-dimension...
We present a detailed analysis of the phase transition in the standard model at finite temperature. ...
We present a detailed analysis of the phase transition in the standard model at finite temperature. ...
Kajantie K, Laine M, Rummukainen K, Shaposhnikov M. The electroweak phase transition: A non-perturba...
The dynamics of five dimensional Wilson line phases at finite temperature is studied in the one-loo...
The dynamics of five dimensional Wilson line phases at finite temperature is studied in the one-loop...
The dynamics of five dimensional Wilson line phases at finite temperature is studied in the oneloop ...
We study the finite temperature electroweak transition with non-perturbative lattice Monte Carlo sim...
33 pages, 8 figuresInternational audienceWe compute the complete one-loop finite temperature effecti...
We compute the complete one-loop finite temperature effective potential for elec-troweak symmetry br...
The electroweak phase transition is investigated by means of the perturbatively calculated high temp...
The electroweak phase transition is investigated by means of the perturbatively calculated high temp...
We study the bulk mass effects on the electroweak phase transition at finite temperature in a five d...
The finite temperature electroweak phase transition is studied on the lattice. The results of the si...
The electroweak phase transition at finite temperature is investigated in numerical simulations of t...
AbstractWe present a non-perturbative model of Gauge-Higgs Unification. We consider a five-dimension...
We present a detailed analysis of the phase transition in the standard model at finite temperature. ...
We present a detailed analysis of the phase transition in the standard model at finite temperature. ...
Kajantie K, Laine M, Rummukainen K, Shaposhnikov M. The electroweak phase transition: A non-perturba...