Constraining Dark Energy Perturbations: the Role of Early Dark Energy
arXiv:1907.10946
Abstract
Dark Energy not only has background effects through its equation of state , but also it can cluster through its sound speed , subject to certain conditions. As is well-known, for dynamical dark energy models, dark energy perturbations get sourced into matter perturbations through metric perturbations which is always accompanied by the term . Hence, for dynamical dark energy models with close , their perturbations get almost decoupled from metric leaving nearly null imprints on matter power spectra. Furthermore, Quintessence models with its sound speed equal to speed of light, washes out almost any inhomogeneities occurred within sub-Hubble scales, hence making detectability of dark energy perturbations far more difficult than already is. In this article we look for these imprints by going beyond Quintessence considering an Early Dark Energy parametrization that not only have a non-negligible energy density at early times, but also it can achieve far from , making dark energy perturbations detectable in sub-horizon scales. With the help of current datasets, we are able to constrain sound speed of dark energy to a low value (), along with a much higher range allowed for early dark energy density, with strong constraints on it (). We discuss effects of different datasets on this parametrization along with possible explanation for deviation on certain parameter(s) comparing between case and the case where it is kept open.
12 pages, 3 figures, 1 table
References in corpus (9)
- Dynamics of dark energy
- The Complete Light-curve Sample of Spectroscopically Confirmed Type Ia Supernovae from Pan-STARRS1 and Cosmological Constraints from The Combined Pantheon Sample
- The acceleration of the universe and the physics behind it
- Measuring the Speed of Dark: Detecting Dark Energy Perturbations
- Quantifying tensions in cosmological parameters: Interpreting the DES evidence ratio
- Fingerprinting dark energy
- Distinguishing between Neutrinos and time-varying Dark Energy through Cosmic Time
- Current constraints on early and stressed dark energy models and future 21 cm perspectives
- Gravitational Wave Opacity from Gauge Field Dark Energy