How many dark energy parameters?
arXiv:astro-ph/0505330 · doi:10.1103/PhysRevD.72.043509
Abstract
For exploring the physics behind the accelerating universe a crucial question is how much we can learn about the dynamics through next generation cosmological experiments. For example, in defining the dark energy behavior through an effective equation of state, how many parameters can we realistically expect to tightly constrain? Through both general and specific examples (including new parametrizations and principal component analysis) we argue that the answer is 42 - no, wait, two. Cosmological parameter analyses involving a measure of the equation of state value at some epoch (e.g. w_0) and a measure of the change in equation of state (e.g. w') are therefore realistic in projecting dark energy parameter constraints. More elaborate parametrizations could have some uses (e.g. testing for bias or comparison with model features), but do not lead to accurately measured dark energy parameters.
10 pages, 1 figure
References in corpus (6)
- The foundations of observing dark energy dynamics with the Wilkinson Microwave Anisotropy Probe
- The essence of quintessence and the cost of compression
- Constraining Dark Energy with X-ray Galaxy Clusters, Supernovae and the Cosmic Microwave Background
- Constraining dark energy with cross-correlated CMB and Large Scale Structure data
- Constraints on the sound speed of dark energy
- Is Dark Energy Dynamical? Prospects for an Answer
Cited by in corpus (70)
- Observational Probes of Cosmic Acceleration
- Cosmological Parameters from Observations of Galaxy Clusters
- Dark Energy
- Quintessence: A Review
- Scrutinizing Exotic Cosmological Models Using ESSENCE Supernova Data Combined with Other Cosmological Probes
- Correlated Fluctuations in Luminosity Distance and the (Surprising) Importance of Peculiar Motion in Supernova Surveys
- Dark energy in Horndeski theories after GW170817: A review
- Simulations of the WFIRST Supernova Survey and Forecasts of Cosmological Constraints
- Observational constraints on one-parameter dynamical dark-energy parametrizations and the tension
- The Paths of Quintessence
- Gamma Ray Bursts as standard candles to constrain the cosmological parameters
- Observational Constraints on Quintessence: Thawing, Tracker, and Scaling models
- Investigating dark energy experiments with principal components
- Slow Roll Reconstruction: Constraints on Inflation from the 3 Year WMAP Dataset
- Tracking Dark Energy with the ISW effect: short and long-term predictions
- Falsifying Paradigms for Cosmic Acceleration
- A Test of Horava Gravity: The Dark Energy
- Observational Constraints on Oscillating Dark-Energy Parametrizations
- Model selection as a science driver for dark energy surveys
- On the determination of the deceleration parameter from Supernovae data
- SN and BAO constraints on (new) polynomial dark energy parametrizations: current results and forecasts
- Pixelated Dark Energy
- Evaluating Dark Energy Probes using Multi-Dimensional Dark Energy Parameters
- Future Constraints on Dynamical Dark-Energy using Gravitational-Wave Standard Sirens
- Latest astronomical constraints on some nonlinear parametric dark energy models
- Hubble parameter reconstruction from a principal component analysis: minimizing the bias
- Looking Beyond Lambda with the Union Supernova Compilation
- Classification of dark energy models in the (w_0,w_a) plane
- Updated observational constraints on quintessence dark energy models
- Constraining the dark energy models using Baryon Acoustic Oscillations: An approach independent of
- Cosmological constraints with GRBs: homogeneous medium vs wind density profile
- Simulations of Quintessential Cold Dark Matter: beyond the cosmological constant
- Multiple kinetic k-essence, phantom barrier crossing and stability
- Thermodynamic aspects of dark energy fluids
- To Bin or Not To Bin: Decorrelating the Cosmic Equation of State
- Dark Before Light: Testing the Cosmic Expansion History through the Cosmic Microwave Background
- Dark Energy, A Cosmological Constant, and Type Ia Supernovae
- Parametrization of K-essence and Its Kinetic Term
- Testing Lambda and the Limits of Cosmography with the Union2.1 Supernova Compilation
- Unifying dark matter, dark energy and inflation with a fuzzy dark fluid
- theories of gravity in Einstein frame: A higher order modified Starobinsky inflation model in the Palatini approach
- Prospects for Dark Energy Evolution: a Frequentist Multi-Probe Approach
- Uniqueness of Current Cosmic Acceleration
- Improving Dark Energy Constraints with High Redshift Type Ia Supernovae from CANDELS and CLASH
- Cosmological constraints from low-redshift data
- An optimal basis system for cosmology: data analysis and new parameterisation
- Is dark energy evolving?
- Model-Independent Predictions for Smooth Cosmic Acceleration Scenarios
- The dark side of curvature
- Constraining dark energy using the cross correlations of weak lensing with post-reionization probes of neutral hydrogen
- DE models with combined from BAO and CMB dataset and friends
- How Einstein Discovered Dark Energy
- Stability, dark energy parameterization and swampland aspect of Bianchi Type- cosmological models with f(R, T)-gravity
- Modelling Time-varying Dark Energy with Constraints from Latest Observations
- Probing Dark Energy with Lensing Magnification in Photometric Surveys
- Old Dark Energy
- What can be learned about dark energy evolution?
- Dynamic Dark Energy Equation of State (EoS) and Hubble Constant analysis using type Ia supernovae from Union 2.1 dataset
- Investigating the Possibility of a Turning Point in the Dark Energy Equation of State
- Cosmological scalar fields and Big-Bang nucleosynthesis
- Analysis of recent type Ia supernova data based on evolving dark energy models
- Constraining late-time transitions in the dark energy equation of state
- Observational constraints on dynamical dark energy with pivoting redshift
- Analytic Study of Cosmological Perturbations in a Unified Model of Dark Matter and Dark Energy with a Sharp Transition
- Linear dark energy equation of state revealed by supernovae?
- Constraints on dark energy evolution
- Machian gravity and a cosmology without dark matter and dark energy
- Optimizing Observational Strategy for Future Fgas Constraints
- Categorizing models using Self-Organizing Maps: an application to modified gravity theories probed by cosmic shear
- Beyond LCDM: Bits join the Dark Side