Null test of the cosmic curvature using and supernovae data
arXiv:1509.06283 · doi:10.1103/PhysRevD.93.043517
Abstract
We introduce a model-independent approach to the null test of the cosmic curvature which is geometrically related to the Hubble parameter and luminosity distance . Combining the independent observations of and , we use the model-independent smoothing technique, Gaussian processes, to reconstruct them and determine the cosmic curvature in the null test relation. The null test is totally geometrical and without assuming any cosmological model. We show that the cosmic curvature is consistent with current observational data sets, falling within the limit. To demonstrate the effect on the precision of the null test, we produce a series of simulated data of the models with different . Future observations in better quality can provide a greater improvement to constrain or refute the flat universe with .
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References in corpus (13)
- Cosmological Constraints from the SDSS Luminous Red Galaxies
- Raising the bar: new constraints on the Hubble parameter with cosmic chronometers at z2
- Nonparametric Dark Energy Reconstruction from Supernova Data
- Reconstruction of the deceleration parameter and the equation of state of dark energy
- Dynamical Dark Energy or Simply Cosmic Curvature?
- Nonparametric Reconstruction of the Dark Energy Equation of State
- Power of Observational Hubble Parameter Data: a Figure of Merit Exploration
- Reconstructing the interaction between dark energy and dark matter using Gaussian Processes
- Using H(z) data as a probe of the concordance model
- Probing for dynamics of dark energy and curvature of universe with latest cosmological observations
- We do not live in the R_h = c t universe
- Implication of Dark Energy Parametrizations on the Determination of the Curvature of the Universe
- Model-independent determination of curvature parameter by using and data pair from BAO measurement
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