arXiv:hep-ph/0509278·v1·High Energy Physics — Phenomenology
Constraining invisible neutrino decays with the cosmic microwave background
Steen Hannestad (University of Aarhus)🇩🇰 · Georg Raffelt (Max Planck Inst., Munich)🇩🇪
Abstract
Precision measurements of the acoustic peaks of the cosmic microwave background indicate that neutrinos must be freely streaming at the photon decoupling epoch when T ~ 0.3 eV. This requirement implies restrictive limits on ``secret neutrino interactions,'' notably on neutrino Yukawa couplings with hypothetical low-mass (pseudo)scalars \phi. For diagonal couplings in the neutrino mass basis we find g < 1 x 10^-7, comparable to limits from supernova 1987A. For the off-diagonal couplings and assuming hierarchical neutrino masses we find g < 1 x 10^-11 (0.05 eV/m)^2 where m is the heavier mass of a given neutrino pair connected by g. This stringent limit excludes that the flavor content of high-energy neutrinos from cosmic-ray sources is modified by \nu -> \nu' + \phi decays on their way to Earth.
Comments: Revtex, 4 pages