Reconstructing the interaction between dark energy and dark matter using Gaussian Processes
arXiv:1505.04443 · doi:10.1103/PhysRevD.91.123533
Abstract
We present a nonparametric approach to reconstruct the interaction between dark energy and dark matter directly from SNIa Union 2.1 data using Gaussian processes, which is a fully Bayesian approach for smoothing data. In this method, once the equation of state () of dark energy is specified, the interaction can be reconstructed as a function of redshift. For the decaying vacuum energy case with , the reconstructed interaction is consistent with the standard CDM model, namely, there is no evidence for the interaction. This also holds for the constant cases from to and for the Chevallier-Polarski-Linder (CPL) parametrization case. If the equation of state deviates obviously from , the reconstructed interaction exists at confidence level. This shows the degeneracy between the interaction and the equation of state of dark energy when they get constraints from the observational data.
9 pages, 7 figures. Published in Physical Review D. Small updates to matche the published version
References in corpus (12)
- Indications of a late-time interaction in the dark sector
- Dynamics of interacting dark energy
- Consequences of dark matter-dark energy interaction on cosmological parameters derived from SNIa data
- Effects of the interaction between dark energy and dark matter on cosmological parameters
- Nonparametric Dark Energy Reconstruction from Supernova Data
- Interacting Dark Energy and Dark Matter: observational Constraints from Cosmological Parameters
- Nonparametric Reconstruction of the Dark Energy Equation of State
- Using H(z) data as a probe of the concordance model
- Coupled dark matter-dark energy in light of near Universe observations
- The Parameterized Post-Friedmannian Framework for Interacting Dark Energy Theories
- Model Independent Reconstruction of the Expansion History of the Universe and the Properties of Dark Energy
- Exploring the full parameter space for an interacting dark energy model with recent observations including redshift-space distortions: Application of the parametrized post-Friedmann approach
Cited by in corpus (19)
- Estimating cosmological parameters by the simulated data of gravitational waves from the Einstein Telescope
- A new interacting two fluid model and its consequences
- In search of the dark matter dark energy interaction: a kinematic approach
- Cosmological constraints on coupled dark energy
- Improved constraints on the dark energy equation of state using Gaussian processes
- Towards a model-independent reconstruction approach for late-time Hubble data
- Model-independent constraints on Lorentz invariance violation: implication from updated Gamma-ray burst observations
- Model-independent Constraints on Cosmic Curvature and Opacity
- Constraining the curvature density parameter in cosmology
- Non-parametric reconstruction of interaction in the cosmic dark sector
- Implications from simulated strong gravitational lensing systems: constraining cosmological parameters using Gaussian Processes
- Searching for the Evidence of Dynamical Dark Energy
- Exploring the "--" relation of HII galaxies and giant extragalactic HII regions acting as standard candles
- Reconstruction of interaction rate in Holographic dark energy
- Model-independent constraints on cosmic curvature: implication from the future gravitational wave observation DECIGO
- Standard sirens and dark sector with Gaussian process
- Linearized modified gravity theories and gravitational waves physics in the GBD theory
- Qualitative description of the universe in the interacting fluids scheme
- Universe consisting of diffusive dark fluids: thermodynamics and stability analysis