Matter Power Spectrum for the Generalized Chaplygin Gas Model: The Newtonian Approach
arXiv:0810.4308 · doi:10.1103/PhysRevD.78.103523
Abstract
We model the cosmic medium as the mixture of a generalized Chaplygin gas and a pressureless matter component. Within a neo-Newtonian approach (in which, different from standard Newtonian cosmology, the pressure enters the homogeneous and isotropic background dynamics) we compute the matter power spectrum. The 2dFGRS data are used to discriminate between unified models of the dark sector (a purely baryonic matter component of roughly 5 percent of the total energy content and roughly 95 percent generalized Chaplygin gas) and different models, for which there is separate dark matter, in addition to that accounted for by the generalized Chaplygin gas. Leaving the corresponding density parameters free, we find that the unified models are strongly disfavored. On the other hand, using unified model priors, the observational data are also well described, in particular for small and large values of the generalized Chaplygin gas parameter . The latter result is in agreement with a recent, more qualitative but fully relativistic, perturbation analysis in Gorini et al.
Latex file, 17 pages, 29 figures in eps format
References in corpus (5)
Cited by in corpus (32)
- Viscous dark fluid universe
- Note on the Evolution of the Gravitational Potential in Rastall Scalar Field Theories
- Constraints on dissipative unified dark matter
- Power spectrum for the Bose-Einstein condensate dark matter
- Non-adiabatic dark fluid cosmology
- Dark Energy in Practice
- Constraints on Cold Dark Matter Accelerating Cosmologies and Cluster Formation
- Ruling out the Modified Chaplygin Gas Cosmologies
- Does Chaplygin gas have salvation?
- Observational constraints on a unified dark matter and dark energy model based on generalized Chaplygin gas
- The extreme limit of the generalized Chaplygin gas
- Scalar models for the generalized Chaplygin gas and the structure formation constraints
- Cosmological consequences and statefinder diagnosis of a non-interacting generalized Chaplygin gas in gravity
- Contraints on unified models for dark matter and dark energy using H(z)
- Matter power spectrum for the generalized Chaplygin gas model: The relativistic case
- Viscous Generalized Chaplygin Gas as a Unified Dark Fluid: Including Perturbation of Bulk Viscosity
- A short review on clustering dark energy
- Observational constraints of the gravitational waves in the Brans-Dicke theory: Einstein frame and Jordan-Brans-Dicke frame
- Constraints on the Generalized Chaplygin Gas Model from Gamma-Ray Bursts
- Thermodynamics of Chaplygin gas
- Power spectrum in the Chaplygin gas model: tachyonic, fluid and scalar field representations
- Observational Constraints on the Generalized Chaplygin Gas
- Generalized models of unification of dark matter and dark energy
- One-parameter dynamical dark-energy from the generalized Chaplygin gas
- Bohmian Quantization of the Big Rip
- A note on observational signatures in superluminal unified dark matter models
- Thermodynamics of Modified Chaplygin-Jacobi Gas and Modified Chaplygin-Abel Gas: Stability Analysis and Observational Constraints
- Unified dark matter: constraints from galaxies and clusters
- Power-law solutions for TeVeS
- Skewness of matter distribution in clustering dark energy cosmologies
- Is the cosmological dark sector better modeled by a generalized Chaplygin gas or by a scalar field?
- The Lambert equation of state in light of DESI BAO