arXiv:hep-ph/0505186·v3·High Energy Physics — Phenomenology
Neutrino collective excitations in the Standard Model at high temperature
Abstract
Neutrino collective excitations are studied in the Standard Model at high temperatures below the symmetry breaking scale. Two parameters determine the properties of the collective excitations: a mass scale which determines the \emph{chirally symmetric} gaps in the spectrum and . The spectrum consists of left handed negative helicity quasiparticles, left handed positive helicity quasiholes and their respective antiparticles. For there are two gapped quasiparticle branches and one gapless and two gapped quasihole branches, all but the higher gapped quasiparticle branches terminate at end points. For the quasiparticle spectrum features a pitchfork bifurcation and for the collective modes are gapless quasiparticles with dispersion relation below the light cone for approaching the free field limit for with a rapid crossover between the soft non-perturbative to the hard perturbative regimes for .The \emph{decay} of the vector bosons leads to a \emph{width} of the collective excitations of order which is explicitly obtained in the limits and . At high temperature this damping rate is shown to be competitive with or larger than the collisional damping rate of order for a wide range of neutrino energy.
Comments: 32 pages 16 figs. Discussion on screening corrections. Results unchanged to appear in Phys. Rev. D