Shifting the Universe: Early Dark Energy and Standard Rulers
arXiv:0803.2877 · doi:10.1088/1475-7516/2008/06/004
Abstract
The presence of dark energy at high redshift influences both the cosmic sound horizon and the distance to last scattering of the cosmic microwave background. We demonstrate that through the degeneracy in their ratio, early dark energy can lie hidden in the CMB temperature and polarization spectra, leading to an unrecognized shift in the sound horizon. If the sound horizon is then used as a standard ruler, as in baryon acoustic oscillations, then the derived cosmological parameters can be nontrivially biased. Fitting for the absolute ruler scale (just as supernovae must be fit for the absolute candle magnitude) removes the bias but decreases the leverage of the BAO technique by a factor 2.
6 pages, 3 figures
References in corpus (5)
- Cosmology and the Fate of Dilatation Symmetry
- Cuscuton Cosmology: Dark Energy meets Modified Gravity
- Analyze This! A Cosmological Constraint Package for CMBEASY
- Impact of three years of data from the Wilkinson Microwave Anisotropy Probe on cosmological models with dynamical dark energy
- Cluster abundances and S-Z power spectra: effects of non-Gaussianity and early dark energy
Cited by in corpus (17)
- Limits on Dark Radiation, Early Dark Energy, and Relativistic Degrees of Freedom
- Future CMB Constraints on Early, Cold, or Stressed Dark Energy
- Geometrical observational bounds on a fractal horizon holographic dark energy
- CMB Lensing Constraints on Neutrinos and Dark Energy
- Early Dark Energy at High Redshifts: Status and Perspectives
- Measuring Distance Ratios with CMB-Galaxy Lensing Cross-correlations
- Isocurvature modes and Baryon Acoustic Oscillations
- Probing a Steep EoS for Dark Energy with latest observations
- On measuring the absolute scale of baryon acoustic oscillations
- Delayed Recombination and Standard Rulers
- Early dark energy constraints with late-time expansion marginalization
- Towards a Solution to the H0 Tension: the Price to Pay
- Reducing Zero-point Systematics in Dark Energy Supernova Experiments
- Addressing the tension through matter with pressure and no early dark energy
- Cosmological signatures of a Rapid Diluted Energy Density
- Impact of cosmological signatures in two-point statistics beyond the linear regime
- Impact of a Rapid Diluted Energy Density on the halo mass function