Cosmological lepton asymmetry, primordial nucleosynthesis and sterile neutrinos

Kevork Abazajian, Nicole F. Bell, George M. Fuller, and Yvonne Y. Y. Wong
Phys. Rev. D 72, 063004 – Published 27 September 2005

Abstract

We study post weak decoupling coherent active-sterile and active-active matter-enhanced neutrino flavor transformation in the early Universe. We show that flavor conversion efficiency at Mikheyev-Smirnov-Wolfenstein resonances is likely to be high (adiabatic evolution) for relevant neutrino parameters and energies. However, we point out that these resonances cannot sweep smoothly and continuously with the expansion of the Universe. We show how neutrino flavor conversion in this way can leave both the active and sterile neutrinos with nonthermal energy spectra, and how, in turn, these distorted energy spectra can affect the neutron-to-proton ratio, primordial nucleosynthesis, and cosmological mass/closure constraints on sterile neutrinos. We demonstrate that the existence of a light sterile neutrino which mixes with active neutrinos can change fundamentally the relationship between the cosmological lepton numbers and the primordial nucleosynthesis He4 yield.

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  • Received 8 October 2004

DOI:https://doi.org/10.1103/PhysRevD.72.063004

©2005 American Physical Society

Authors & Affiliations

Kevork Abazajian1,2,3, Nicole F. Bell2,3,4, George M. Fuller3,5, and Yvonne Y. Y. Wong3,6

  • 1Theoretical Division, MS B285, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA
  • 2Theoretical Astrophysics, Fermi National Accelerator Laboratory, Batavia, Illinois 60510, USA
  • 3Kavli Institute for Theoretical Physics, University of California, Santa Barbara, California 93106, USA
  • 4Kellogg Radiation Laboratory, California Institute of Technology, Pasadena, California 91125, USA
  • 5Department of Physics, University of California, San Diego, La Jolla, California 92093-0319, USA
  • 6Deutsches Elektronen-Synchrotron DESY, D-22607 Hamburg, Germany

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Issue

Vol. 72, Iss. 6 — 15 September 2005

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