Cosmographic analysis of the equation of state of the universe through Pad\'e approximations
Christine Gruber, Orlando Luongo

TL;DR
This paper introduces Padé approximations into cosmography to improve convergence and analyze the universe's equation of state, using supernova data and MCMC methods, confirming an accelerating universe consistent with Planck results.
Contribution
It extends traditional cosmography with Padé approximations, enhancing convergence and providing new insights into the universe's thermodynamic state.
Findings
Padé approximations have greater convergence radii than Taylor series.
Data supports an accelerating universe with a positive jerk parameter.
Results align with Planck data, confirming the $ ext{Λ}$CDM model at small redshifts.
Abstract
Cosmography is used in cosmological data processing in order to constrain the kinematics of the universe in a model-independent way, providing an objective means to evaluate the agreement of a model with observations. In this paper, we extend the conventional methodology of cosmography employing Taylor expansions of observables by an alternative approach using Pad\'e approximations. Due to the superior convergence properties of Pad\'e expansions, it is possible to improve the fitting analysis to obtain numerical values for the parameters of the cosmographic series. From the results, we can derive the equation of state parameter of the universe and its first derivative and thus acquire information about the thermodynamic state of the universe. We carry out statistical analyses using observations of the distance modulus of type 1a supernovae, provided by the union 2.1 compilation of the…
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