Revisiting cosmological bounds on radiative neutrino lifetime
arXiv:0705.4667 · doi:10.1103/PhysRevD.76.053007
Abstract
Neutrino oscillation experiments and direct bounds on absolute masses constrain neutrino mass differences to fall into the microwave energy range, for most of the allowed parameter space. As a consequence of these recent phenomenological advances, older constraints on radiative neutrino decays based on diffuse background radiations and assuming strongly hierarchical masses in the eV range are now outdated. We thus derive new bounds on the radiative neutrino lifetime using the high precision cosmic microwave background spectral data collected by the Far Infrared Absolute Spectrophotometer instrument on board of Cosmic Background Explorer. The lower bound on the lifetime is between a few x 10^19 s and 5 x 10^20 s, depending on the neutrino mass ordering and on the absolute mass scale. However, due to phase space limitations, the upper bound in terms of the effective magnetic moment mediating the decay is not better than ~ 10^-8 Bohr magnetons. We also comment about possible improvements of these limits, by means of recent diffuse infrared photon background data. We compare these bounds with pre-existing limits coming from laboratory or astrophysical arguments. We emphasize the complementarity of our results with others available in the literature.
7 pages, 3 figures. Minor changes in the text, few references added. Matches the published version
References in corpus (12)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Massive neutrinos and cosmology
- The Cosmic Infrared Background Resolved by Spitzer. Contributions of Mid-Infrared Galaxies to the Far-Infrared Background
- Direct X-ray Constraints on Sterile Neutrino Warm Dark Matter
- Observables sensitive to absolute neutrino masses: A reappraisal after WMAP-3y and first MINOS results
- New bounds on millicharged particles from cosmology
- Sterile neutrinos, lepton asymmetries, primordial elements: how much of each?
- Effects of non-standard neutrino-electron interactions on relic neutrino decoupling
- An improved cosmological bound on the thermal axion mass
- Cosmological neutrino mass detection: The best probe of neutrino lifetime
- Using the cluster mass function from weak lensing to constrain neutrino masses
- Searching for decaying axion-like dark matter from clusters of galaxies
Cited by in corpus (15)
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- Microwave Background Constraints on Mixing of Photons with Hidden Photons
- Constraints on neutrino decay lifetime using long-baseline charged and neutral current data
- Neutrino Decays and Neutrino Electron Elastic Scattering in Unparticle Physics
- Invisible neutrino decay in precision cosmology
- On the Impact of Neutrino Decays on the Supernova Neutronization-Burst Flux
- Probing neutrino magnetic moment and unparticle interactions with Borexino
- Neutrino electromagnetic interactions: a window to new physics
- Unstable Cosmic Neutrino Capture
- Probing invisible neutrino decay with KM3NeT-ORCA
- Theoretical Overview on the Flavor Issues of Massive Neutrinos
- Neutrino decays as a natural explanation of the neutrino mass tension
- Disentangle Neutrino Electromagnetic Properties with Atomic Radiative Pair Emission
- Helicity-changing Decays of Cosmological Relic Neutrinos
- Visible Neutrino Decays and the Impact of the Daughter-Neutrino Mass