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Exploring scalar field dynamics with Gaussian processes
DOI:10.1088/1475-7516/2014/01/005.png)
摘要
En 中文
The origin of the accelerated expansion of the Universe remains an unsolved mystery in Cosmology. In this work we consider a spatially flat Friedmann-Robertson-Walker (FRW) Universe with non-relativistic matter and a single scalar field contributing to the energy density of the Universe. Properties of this scalar field, like potential, kinetic energy, equation of state etc. are reconstructed from Supernovae and BAO data using Gaussian processes. We also reconstruct energy conditions and kinematic variables of expansion, such as the jerk and the slow roll parameter. We find that the reconstructed scalar field variables and the kinematic quantities are consistent with a flat ACDM Universe. Further, we find that the null energy condition is satisfied for the redshift range of the Supernovae data considered in the paper, but the strong energy condition is violated.
Keyword:
dark energy theory
supernova type Ia - standard candles
baryon acoustic oscillations
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期刊
IF:
5.9
论文数:
1.3W
被引数:
4.7W
机构
引用论文
Cosmography: Supernovae Union2, Baryon Acoustic Oscillation, observational Hubble data and Gamma ray bursts
PHYSICS LETTERS B
IF4.5

