Multi-momentum and multi-flavour active-sterile neutrino oscillations in the early universe: role of neutrino asymmetries and effects on nucleosynthesis
arXiv:1302.1200 · doi:10.1103/PhysRevD.87.073006
Abstract
We perform a study of the flavour evolution in the early universe of a multi-flavour active-sterile neutrino system with parameters inspired by the short-baseline neutrino anomalies. In a neutrino-symmetric bath a "thermal" population of the sterile state would quickly grow, but in the presence of primordial neutrino asymmetries a self-suppression as well as a resonant sterile neutrino production can take place, depending on temperature and chosen parameters. In order to characterize these effects, we go beyond the usual average momentum and single mixing approximations and consider a multi-momentum and multi-flavour treatment of the kinetic equations. We find that the enhancement obtained in this case with respect to the average momentum approximation is significant, up to \sim 20 % of a degree of freedom. Such detailed and computationally demanding treatment further raises the asymmetry values required to significantly suppress the sterile neutrino production, up to large and preferentially net asymmetries |L_ν| > O(10^{-2}). For such asymmetries, however, the active-sterile flavour conversions happen so late that significant distortions are produced in the electron (anti)neutrino spectra. The larger |L_ν|, the more the impact of these distortions takes over as dominant cosmological effect, notably increasing the 4 He abundance in primordial nucleosynthesis (BBN). The standard expression of the primordial yields in terms of the effective number of neutrinos and asymmetries is also greatly altered. We numerically estimate the magnitude of such effects for a few representative cases and comment on possible implications for forthcoming cosmological measurements.
v2 (12 pages, 4 eps figures) revised version. Comments added, references updated. Matches the version published in PRD
References in corpus (18)
- The Reactor Antineutrino Anomaly
- Massive neutrinos and cosmology
- Light Sterile Neutrinos: A White Paper
- Probing cosmological parameters with the CMB: Forecasts from full Monte Carlo simulations
- Cosmology seeking friendship with sterile neutrinos
- A robust upper limit on N_eff from BBN, circa 2011
- Limits on nu_e and anti-nu_e disappearance from Gallium and reactor experiments
- Robust Cosmological Bounds on Neutrinos and their Combination with Oscillation Results
- The minimal 3+2 neutrino model versus oscillation anomalies
- Sterile Neutrinos in Light of Recent Cosmological and Oscillation Data: a Multi-Flavor Scheme Approach
- Relic density of neutrinos with primordial asymmetries
- Sterile neutrinos, lepton asymmetries, primordial elements: how much of each?
- Cosmological lepton asymmetry with a nonzero mixing angle θ_{13}
- Additional Light Sterile Neutrinos and Cosmology
- MiniBooNE and LSND data: non-standard neutrino interactions in a (3+1) scheme versus (3+2) oscillations
- Light Element Signatures of Sterile Neutrinos and Cosmological Lepton Numbers
- Are Light Sterile Neutrinos Preferred or Disfavored by Cosmology?
- Is there evidence for additional neutrino species from cosmology?