Constraints on the Cosmological Relativistic Energy Density
arXiv:astro-ph/0110533 · doi:10.1103/PhysRevD.65.063506
Abstract
We discuss bounds on the cosmological relativistic energy density as a function of redshift, reviewing the big bang nucleosynthesis and cosmic microwave background bounds, updating bounds from large scale structure, and introducing a new bound from the magnitude-redshift relation of Type Ia supernovae. We conclude that the standard and well-motivated assumption that relativistic energy is negligible during recent epochs is not necessitated by extant data. We then demonstrate the utility of these bounds by constraining the mass and lifetime of a hypothetical massive big bang relic particle.
9 pages, 5 figures. Minor changes to reflect referee's comments. Accepted for publication in Phys. Rev. D. Scheduled for 15 March, 2002
References in corpus (9)
- Final Results from the Hubble Space Telescope Key Project to Measure the Hubble Constant
- A High Spatial Resolution Analysis of the MAXIMA-1 Cosmic Microwave Background Anisotropy Data
- Measurement of stellar age from uranium decay
- A New Measurement of the Primordial Abundance of Deuterium: Toward Convergence with the Baryon Density from the CMB?
- Galaxy Cluster Gas Mass Fractions from Sunyaev-Zel'dovich Effect Measurements: Constraints on Omega_M
- Constraining neutrino physics with BBN and CMBR
- How Does CMB + BBN Constrain New Physics?
- New CMBR data and the cosmic neutrino background
- Primordial Nucleosynthesis, Cosmic Microwave Background and Neutrinos
Cited by in corpus (25)
- A precision calculation of the effective number of cosmological neutrinos
- Gravitational probes of dark matter physics
- Upper Bound on the Dark Matter Total Annihilation Cross Section
- Converting non-relativistic dark matter to radiation
- The Impact of an Extra Background of Relativistic Particles on the Cosmological Parameters derived from Microwave Background Anisotropies
- Model-independent dark matter annihilation bound from the diffuse gamma ray flux
- Present bounds on the relativistic energy density in the Universe from cosmological observables
- Measuring the cosmological background of relativistic particles with WMAP
- Cosmological Constraints on Invisible Decay of Dark Matter
- Mapping the allowed parameter space for decaying dark matter models
- Cosmological Constraints on Neutrino Injection
- Dark matter from late decays and the small-scale structure problems
- Oscillation effects on neutrino decoupling in the early universe
- Evolution of the Dark Matter Distribution with 3-D Weak Lensing
- Dark radiation as a signature of dark energy
- Symmetric and Asymmetric Reheating
- Observational constraints on Horava-Lifshitz cosmology
- Weak Gravitational Lensing as a Method to Constrain Unstable Dark Matter
- New constraint on the cosmological background of relativistic particles
- Particle decay in post inflationary cosmology
- Radiation can never again dominate Matter in a Vacuum Dominated Universe
- Constraining Decaying Dark Matter
- The End of the Rainbow: What Can We Say About the Extragalactic Sub-Megahertz Radio Sky?
- Cosmic Neutrino Bound on the Dark Matter Annihilation Rate in the Late Universe
- Dark Energy, with Signatures