Lepton Flavor Asymmetries: from the early Universe to BBN
arXiv:2502.14960 · doi:10.1007/JHEP06(2025)137
Abstract
Large primordial lepton flavor asymmetries with almost vanishing total baryon-minus-lepton number can evade the usual BBN and CMB constraints if neutrino oscillations lead to perfect flavor equilibration. Solving the momentum averaged quantum kinetic equations (QKEs) describing neutrino oscillations and interactions, we perform the first systematic investigation of this scenario, uncovering a rich flavor structure in stark contradiction to the assumption of simple flavor equilibration. We find (i) a particular direction in flavor space, for normal (inverted) neutrino mass hierarchy, in which the flavor equilibration is efficient and primordial asymmetries are essentially unconstrained, (ii) a minimal washout factor, yielding a conservative estimate for the allowed primordial asymmetries in a generic flavor direction, and (iii) particularly strong or weak washout if one of the initial flavor asymmetries vanishes due to non-adiabatic muon- or electron-driven MSW transitions. These results open up the possibility of a first-order QCD phase transition facilitated by large lepton asymmetries as well as baryogenesis from large and compensated asymmetries. Our first-principles approach of deriving momentum averaged QKEs includes collision terms beyond the damping approximation, energy transfer between the neutrino and electron-photon plasma, and provides a fast and reliable way to investigate the impact of primordial lepton asymmetries at the time of BBN. We publicly release the Mathematica code COFLASY-M on GitHub which solves the QKEs numerically.
22+16 pages, 10+4 figures. Fixed minor typos, published in JHEP
References in corpus (33)
- The Sphaleron Rate in the Minimal Standard Model
- NuFit-6.0: Updated global analysis of three-flavor neutrino oscillations
- Relic neutrino decoupling with flavour oscillations revisited
- A precision calculation of relic neutrino decoupling
- New Extraction of the Cosmic Birefringence from the Planck 2018 Polarization Data
- The nuMSM, leptonic asymmetries, and properties of singlet fermions
- Sterile neutrino dark matter as a consequence of nuMSM-induced lepton asymmetry
- EMPRESS. VIII. A New Determination of Primordial He Abundance with Extremely Metal-Poor Galaxies: A Suggestion of the Lepton Asymmetry and Implications for the Hubble Tension
- Thermalisation of sterile neutrinos in the early Universe in the 3+1 scheme with full mixing matrix
- Prospects for direct detection of circular polarization of gravitational-wave background
- Relic density of neutrinos with primordial asymmetries
- Cosmological lepton asymmetry with a nonzero mixing angle θ_{13}
- Quest for circular polarization of gravitational wave background and orbits of laser interferometers in space
- Cosmological beam dump: constraints on dark scalars mixed with the Higgs boson
- Possible CP-Violation effects in core-collapse Supernovae
- Towards a precision calculation of in the Standard Model III: Improved estimate of NLO contributions to the collision integral
- Indications for a Nonzero Lepton Asymmetry from Extremely Metal-Poor Galaxies
- Resurrection of large lepton number asymmetries from neutrino flavor oscillations
- Primordial lepton asymmetries in the precision cosmology era: Current status and future sensitivities from BBN and the CMB
- Lepton Asymmetric Universe
- Primordial neutrino asymmetry evolution with full mean-field effects and collisions
- Baryogenesis from an Earlier Phase Transition
- Cosmology meets functional QCD: First-order cosmic QCD transition induced by large lepton asymmetries
- Wash-in leptogenesis after axion inflation
- Bounds on right-handed neutrino parameters from observable leptogenesis
- Constraints on primordial lepton asymmetries with full neutrino transport
- A new constraint on primordial lepton flavour asymmetries
- Leptoflavorgenesis: baryon asymmetry of the Universe from lepton flavor violation
- Large Lepton Asymmetry for Small Baryon Asymmetry and Warm Dark Matter
- Primordial neutrinos and new physics: novel approach to solving neutrino Boltzmann equation
- How new physics affects primordial neutrinos decoupling: Direct Simulation Monte Carlo approach
- QED corrections to the thermal neutrino interaction rate
- Confronting the low-scale seesaw and leptogenesis with neutrinoless double beta decay
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- Fast and Flexible Neutrino Decoupling Part I: The Standard Model
- Return of the Lepton Number: Sterile Neutrino Dark Matter Production and the Revival of the Shi-Fuller Mechanism
- Chiral symmetry breaking and pion condensation in the early universe
- Primordial Black Holes Formation Beyond the Standard Cosmic QCD Transition
- Fifty shades of grayness: parametrizations of spectral distortions and applications in cosmology