Cosmic Neutrino Last Scattering Surface
arXiv:0907.2887 · doi:10.1103/PhysRevLett.103.171301
Abstract
Neutrinos decoupled from the rest of the cosmic plasma when the Universe was less than one second old, far earlier than the photons which decoupled at t=380,000 years. Surprisingly, though, the last scattering surface of the neutrinos is much closer to us than that of the photons. Here we calculate the properties of the last scattering surfaces of the three species of neutrinos.
Important reference to earlier work of Bisnovatyi-Kogan and Seidov added, and mis-spelling of Opher reference corrected
References in corpus (8)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Charged current cross section for massive cosmological neutrinos impinging on radioactive nuclei
- Prospects for the direct detection of the cosmic neutrino background
- Prospects for cosmic neutrino detection in tritium experiments in the case of hierarchical neutrino masses
- Low Energy Antineutrino Detection Using Neutrino Capture on EC Decaying Nuclei
- Quantum Coherence of Relic Neutrinos
- Anisotropy of the Cosmic Neutrino Background
- Can the Copernican principle be tested by cosmic neutrino background?
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- Imprint of massive neutrinos on Persistent Homology of large-scale structure
- Multi-Messenger Astrophysics with the Cosmic Neutrino Background
- Efficiently Extracting Energy from Cosmological Neutrinos
- Ultra High Energy Neutrinos: Absorption, Thermal Effects and Signatures
- Olber's Paradox for Superluminal Neutrinos: Constraining Extreme Neutrino Speeds at TeV-ZeV Energies with the Diffuse Neutrino Background
- Studying Both the Universe and Neutrinos Themselves Using Cosmic and Astrophysical Neutrinos
- Living on the Fermi Edge: On Baryon Transport and Fermi Condensation