Why Are Neutrinos Light? -- An Alternative
arXiv:hep-ph/0409276 · doi:10.1016/j.nuclphysbps.2004.10.076
Abstract
We review the recent proposal that neutrinos are light because their masses are proportional to a low scale, f, of lepton flavor symmetry breaking. This mechanism is testable because the resulting pseudo-Goldstone bosons, of mass m_G, couple strongly with the neutrinos, affecting the acoustic oscillations during the eV era of the early universe that generate the peaks in the CMB radiation. Characteristic signals result over a very wide range of (f, m_G) because of a change in the total relativistic energy density and because the neutrinos scatter rather than free-stream. Thermodynamics allows a precise calculation of the signal, so that observations would not only confirm the late-time neutrino mass mechanism, but could also determine whether the neutrino spectrum is degenerate, inverted or hierarchical and whether the neutrinos are Dirac or Majorana. The flavor symmetries could also give light sterile states. If the masses of the sterile neutrinos turn on after the MeV era, the LSND oscillations can be explained without upsetting big bang nucleosynthesis, and, since the sterile states decay to lighter neutrinos and pseudo-Goldstones, without giving too much hot dark matter.
Talk given by LJH at the Fujihara Seminar on Neutrino Mass and Seesaw Mechanism held at KEK, Japan, February 2004. 11 pages, 1 figure, 3 tables
Cited by in corpus (11)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Neutrinoless double-beta decay with massive scalar emission
- Constraints on flavor-dependent long range forces from solar neutrinos and KamLAND
- The Cosmic Neutrino Background and the Age of the Universe
- Lepton Flavor Violation and Supersymmetric Dirac Leptogenesis
- Sterile Neutrinos and Global Symmetries
- Mini Z' Burst from Relic Supernova Neutrinos and Late Neutrino Masses
- Long-range forces : atmospheric neutrino oscillation at a magnetized detector
- Probing Late Neutrino Mass Properties with Supernova Neutrinos
- Electroweak Baryogenesis from Late Neutrino Masses
- Theory and Phenomenology of Dirac Leptogenesis