Primordial lepton asymmetries in the precision cosmology era: Current status and future sensitivities from BBN and the CMB
arXiv:2208.03201 · doi:10.1103/PhysRevD.107.035024
Abstract
Using a new sample of extremely metal poor systems, the EMPRESS survey has recently reported a primordial helium abundance that is smaller than the prediction from the standard big bang nucleosynthesis (BBN) scenario. This measurement could be interpreted as a hint for a primordial lepton asymmetry in the electron neutrino flavor. Motivated by the EMPRESS results, we present a comprehensive analysis of the lepton asymmetry using measurements of the abundances of primordial elements, along with cosmic microwave background (CMB) data from Planck. Assuming that there is no dark radiation in our Universe, we find an electron neutrino chemical potential , which deviates from zero by . If no assumption is made on the abundance of dark radiation in the Universe, the chemical potential is , which deviates from zero by . We also find that this result is rather insensitive to the choice of nuclear reaction rates. If the true helium abundance corresponds to the EMPRESS central value, future CMB observations from the Simons Observatory and CMB-S4 will increase the significance for a nonzero lepton asymmetry to and respectively, assuming no dark radiation, or to when no assumption is made on the abundance of dark radiation.
10 pages, 11 figures, 1 table. Matches published version in PRD. Minor modifications. Updated with the latest EMPRESS results. Conclusions remain unchanged
References in corpus (23)
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- Towards a precision calculation of in the Standard Model II: Neutrino decoupling in the presence of flavour oscillations and finite-temperature QED
- Neutrino decoupling including flavour oscillations and primordial nucleosynthesis
- A precision calculation of relic neutrino decoupling
- Refined Bounds on MeV-scale Thermal Dark Sectors from BBN and the CMB
- Probing Physics Beyond the Standard Model: Limits from BBN and the CMB Independently and Combined
- A new tension in the cosmological model from primordial deuterium?
- 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
- The PHLEK Survey: A New Determination of the Primordial Helium Abundance
- Improving Helium Abundance Determinations with Leo P as a Case Study
- Primordial Deuterium after LUNA: concordances and error budget
- Sterile neutrinos, lepton asymmetries, primordial elements: how much of each?
- Constraining The Universal Lepton Asymmetry
- PArthENoPE Revolutions
- Improved constraints on lepton asymmetry from the cosmic microwave background
- A new determination of the primordial helium abundance using the analyses of HII region spectra from SDSS
- A Bayesian direct method implementation to fit emission line spectra: Application to the primordial He abundance determination
- Chemical abundances in 7 metal-poor HII regions and a determination of the primordial helium abundance
- Lepton Asymmetric Universe
- Primordial neutrino asymmetry evolution with full mean-field effects and collisions
- Resolving conclusions about the early Universe requires accurate nuclear measurements
- Updating non-standard neutrinos properties with Planck-CMB data and full-shape analysis of BOSS and eBOSS galaxies
- Hubble tension in lepton asymmetric cosmology with an extra radiation
Cited by in corpus (28)
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Limits on the cosmic neutrino background
- Constraints on primordial lepton asymmetries with full neutrino transport
- A new constraint on primordial lepton flavour asymmetries
- Current constraints on cosmological scenarios with very low reheating temperatures
- Strong limits on keV-scale galactic sterile neutrino dark matter with stray light from NuSTAR after 11 years of operation
- Constraints on new physics around the MeV scale with cosmological observations
- A review of neutrino decoupling from the early universe to the current universe
- Primordial neutrinos and new physics: novel approach to solving neutrino Boltzmann equation
- Big bang nucleosynthesis and early dark energy in light of the EMPRESS results and the tension
- Local clustering of relic neutrinos with kinetic field theory
- Variation of the fine structure constant in the light of recent helium abundance measurement
- Lepton Flavor Asymmetries: from the early Universe to BBN
- How new physics affects primordial neutrinos decoupling: Direct Simulation Monte Carlo approach
- Cosmic Birefringence from Neutrino and Dark Matter Asymmetries
- Pseudo-Dirac Neutrinos and Relic Neutrino Matter Effect on the High-energy Neutrino Flavor Composition
- Cosmological Parameter Estimation with a Joint-Likelihood Analysis of the Cosmic Microwave Background and Big Bang Nucleosynthesis
- Return of the Lepton Number: Sterile Neutrino Dark Matter Production and the Revival of the Shi-Fuller Mechanism
- Primordial neutrinos fade to gray: constraints from cosmological observables
- Measuring neutrino mass and asymmetry with matter pairwise velocities
- Linear seesaw leptogenesis before/after electroweak symmetry breaking
- Constraints on the lepton asymmetry from DESI DR2 BAO data
- Big-Bang Nucleosynthesis on a bubble universe nucleated in Kerr-AdS Black Hole
- Fifty shades of grayness: parametrizations of spectral distortions and applications in cosmology
- Refitting cosmological data with neutrino mass and degeneracy
- Primordial Black Holes Formation Beyond the Standard Cosmic QCD Transition
- Neutrino-Induced Polarization Rotation in Active Galactic Nuclei Plasmas
- Inside the Black Box of Big Bang Nucleosynthesis: A Comprehensive Sensitivity Atlas for the Precision Era