Newtonian Perturbations on Models with Matter Creation
arXiv:1105.1027 · doi:10.1103/PhysRevD.84.063511
Abstract
Creation of Cold Dark Matter (CCDM) can macroscopically be described by a negative pressure, and, therefore, the mechanism is capable to accelerate the Universe, without the need of an additional dark energy component. In this framework we discuss the evolution of perturbations by considering a Neo-Newtonian approach where, unlike in the standard Newtonian cosmology, the fluid pressure is taken into account even in the homogeneous and isotropic background equations (Lima, Zanchin and Brandenberger, MNRAS {\bf 291}, L1, 1997). The evolution of the density contrast is calculated in the linear approximation and compared to the one predicted by the CDM model. The difference between the CCDM and CDM predictions at the perturbative level is quantified by using three different statistical methods, namely: a simple -analysis in the relevant space parameter, a Bayesian statistical inference, and, finally, a Kolmogorov-Smirnov test. We find that under certain circumstances the CCDM scenario analysed here predicts an overall dynamics (including Hubble flow and matter fluctuation field) which fully recovers that of the traditional cosmic concordance model. Our basic conclusion is that such a reduction of the dark sector provides a viable alternative description to the accelerating CDM cosmology.
Physical Review D in press, 10 pages, 4 figures
References in corpus (19)
- Dark Energy and the Accelerating Universe
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- Cosmological Constraints from the SDSS Luminous Red Galaxies
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Improved Dark Energy Constraints from ~100 New CfA Supernova Type Ia Light Curves
- A test of the nature of cosmic acceleration using galaxy redshift distortions
- The 2dF-SDSS LRG and QSO Survey: QSO clustering and the L-z degeneracy
- The 2dF-SDSS LRG and QSO Survey: The LRG 2-Point Correlation Function and Redshift-Space Distortions
- Dark Interactions and Cosmological Fine-Tuning
- Structure formation in the presence of dark energy perturbations
- Toward a solution of the coincidence problem
- The oscillating dark energy: future singularity and coincidence problem
- An Accelerating Cosmology Without Dark Energy
- Confronting Dark Energy Models using Galaxy Cluster Number Counts
- Trans-Planckian wimpzillas
- Interacting Cosmological Fluids and the Coincidence Problem
- Cosmology, Thermodynamics and Matter Creation
- Continuous matter creation and the acceleration of the universe: the growth of density fluctuations
- Note on "Continuous matter creation and the acceleration of the universe: the growth of density fluctuations"
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- Cosmological solutions in spatially curved universes with adiabatic particle production
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- CCDM Model with Spatial Curvature and The Breaking of "Dark Degeneracy"
- Dynamical systems analysis of a cosmological model with interacting Umami Chaplygin fluid in adiabatic particle creation mechanism: Some bouncing features
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- Is Dark Energy an Effective Manifestation of Non-equilibrium Thermodynamics? -- Insights from DESI