Could the cosmic acceleration be transient? A cosmographic evaluation
arXiv:1005.2986 · doi:10.1088/0264-9381/28/12/125026
Abstract
A possible slowing down of the cosmic expansion is investigated through a cosmographic approach. By expanding the luminosity distance to fourth order and fitting the SN Ia data from the most recent compilations (Union, Constitution and Union 2), the marginal likelihood distributions for the deceleration parameter today suggest a recent reduction of the cosmic acceleration and indicate that there is a considerable probability for . Also in contrast to the prediction of the CDM model, the cosmographic reconstruction permits a cosmic expansion history where the cosmic acceleration could already have peaked and be presently slowing down, which would imply that the recent accelerated expansion of the Universe is a transient phenomenon. It is also shown that to describe a transient acceleration the luminosity distance needs to be expanded at least to fourth order. The present cosmographic results depend neither on the validity of general relativity nor on the matter-energy contents of the Universe.
11 pages, 4 figures. Accepted for publication in Classical and Quantum Gravity
References in corpus (23)
- Dynamics of dark energy
- Dark Energy and the Accelerating Universe
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- 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 kinematical approach to dark energy studies
- Reconstruction of the deceleration parameter and the equation of state of dark energy
- Kinematic Constraints to the Transition Redshift from SNe Ia Union Data
- The Hubble series: Convergence properties and redshift variables
- Primordial features due to a step in the inflaton potential
- Cosmographic Hubble fits to the supernova data
- Scalar-field-dominated cosmology with a transient accelerating phase
- High-Redshift Cosmography
- Examining the cosmic acceleration with the latest Union2 supernova data
- Statistical methods in cosmology
- Bayesian Analysis and Constraints on Kinematic Models from Union SNIa
- Transient cosmic acceleration from interacting fluids
- Brane assisted quintessential inflation with transient acceleration
- Early and Late Transient Cosmic Acceleration due to Curvature Inspired Dark Energy
- Probing the course of cosmic expansion with a combination of observational data
- Is the present cosmic expansion decelerating?
- Bayesian model-independent evaluation of expansion rates of the universe
- Transient cosmic acceleration
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- New Cosmic Accelerating Scenario without Dark Energy
- Statefinder diagnostic and stability of modified gravity consistent with holographic and new agegraphic dark energy
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- A third alternative to explain recent observations: Future deceleration
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- Peculiar motions, accelerated expansion and the cosmological axis
- The transient acceleration from time-dependent interacting dark energy models
- Quantifying the evidence for the current speed-up of the Universe with low and intermediate-redshift data. A more model-independent approach
- A complete cosmic scenario from inflation to late time acceleration: Non-equilibrium thermodynamics in the context of particle creation
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- Euclid: constraining dark energy coupled to electromagnetism using astrophysical and laboratory data
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- Gravitationally influenced particle creation models and late-time cosmic acceleration
- Scalar-tensor cosmologies with dust matter in the general relativity limit
- Machine Learning and cosmographic reconstructions of quintessence and the Swampland conjectures
- Perturbations for transient acceleration
- A new parametrization for dark energy density and future deceleration
- Expanding Universe: slowdown or speedup?
- Transient acceleration in gravity
- Revisiting cosmic acceleration with DESI BAO
- Can the Universe decelerate in the future?
- Constraints On Dark Energy Models From Galaxy Clusters and Gravitational Lensing Data
- Extended Uncertainty Principle: A Deeper Insight into the Hubble Tension?
- Cosmology In Terms Of The Deceleration Parameter. Part II
- Re-examining the role of curvature in the slowing down acceleration scenario
- Interactions in the dark sector of the Universe
- Do current observations support transient acceleration of our universe?
- Dynamical evolution of quintessence cosmology in a physical phase space
- Evolving Cosmic Scenario in Modified Chaplygin Gas with Adiabatic Matter Creation
- Particle Production and Universal Thermodynamics
- Extended Metastable Dark Energy
- Cosmic acceleration a new review
- A class of transient acceleration models consistent with Big Bang Cosmology
- Observational effects of the early episodically dominating dark energy
- 100 Years of Relativistic Cosmology (1917-2017). Part I: From Origins to the Discovery of Universal Expansion (1929)