1998Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fieldsOpen access

Imprint of sterile neutrinos in the cosmic microwave background radiation

Steen Hannestad, Georg G. Raffelt

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Abstract

The existence of low-mass sterile neutrinos is suggested by the current status of solar and atmospheric neutrinos together with the LSND experiment. In typical four-flavor scenarios, neutrinos would contribute to a cosmic hot dark matter component and to an increased radiation content at the epoch of matter-radiation equality. These effects leave their imprint in sky maps of the cosmic microwave background radiation and may thus be detectable with the precision measurements of the upcoming MAP and PLANCK missions.

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The existence of low-mass sterile neutrinos is suggested by the current status of solar and atmospheric neutrinos together with the LSND experiment. In typical four-flavor scenarios, neutrinos would contribute to a cosmic hot dark matter component and to an increased radiation content at the epoch of matter-radiation equality. These effects leave their imprint in sky maps of the cosmic microwave background radiation and may thus be detectable with the precision measurements of the upcoming MAP and PLANCK missions.

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Available abstract

The existence of low-mass sterile neutrinos is suggested by the current status of solar and atmospheric neutrinos together with the LSND experiment. In typical four-flavor scenarios, neutrinos would contribute to a cosmic hot dark matter component and to an increased radiation content at the epoch of matter-radiation equality. These effects leave their imprint in sky maps of the cosmic microwave background radiation and may thus be detectable with the precision measurements of the upcoming MAP and PLANCK missions.

Key concepts: Cosmic microwave background, Cosmic neutrino background, Neutrino, Physics, Sterile neutrino, Cosmic background radiation, Sky, Planck

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