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Temperature Inversion Symmetry in Gauge-Higgs Unification Models

High Energy Physics - Phenomenology 2009-09-28 v2 Mathematical Physics math.MP

Abstract

The temperature inversion symmetry R1TR\to \frac{1}{T} is studied for the finite temperature effective potential of the N=1, d=5d=5, supersymmetric SU(3)c×SU(3)wSU(3)_{c}{\times}SU(3)_{w} model, on the orbifold S1/Z2S^{1}/Z_{2}. For the value of the Wilson line parameter α=1\alpha=1 (SU(2)LSU(2)_{L} breaks to a U(1)U'(1)), it is found that the effective potential contains a symmetric part and an anti-symmetric part under ξ1ξ\xi\to \frac{1}{\xi}, with, ξ=RT\xi=RT. When α=0\alpha=0 (for which, SU(2)LSU(2)_{L} remains unbroken) it is found that the only contribution to the effective potential that spoils the temperature inversion symmetry comes from the fermions in the fundamental representation of the gauge group, with (+,+)(+,+) or (,)(-,-), Z2Z_{2} parities. This is interesting since it implies that the bulk effective potential corresponding to models with orbifold fixed point localized fundamental fermions (and with no bulk fundamental fermions) has the temperature inversion symmetry.

Keywords

Cite

@article{arxiv.0709.1351,
  title  = {Temperature Inversion Symmetry in Gauge-Higgs Unification Models},
  author = {V. K. Oikonomou},
  journal= {arXiv preprint arXiv:0709.1351},
  year   = {2009}
}

Comments

21 pages, version accepted for publication in Theoretical and Mathematical Physics

R2 v1 2026-06-21T09:15:36.039Z