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Gaussian Process Approach for Model-Independent Reconstruction of $f(Q)$ Gravity with Direct Hubble Measurements

Authors :
Gadbail, Gaurav N.
Mandal, Sanjay
Sahoo, P. K.
Source :
Astrophysical Journal (ApJ) 972(2) (2024) 172
Publication Year :
2024

Abstract

The increase of discrepancy in the standard procedure to choose the arbitrary functional form of the Lagrangian $f(Q)$ motivates us to solve this issue in modified theories of gravity. In this regard, we investigate the Gaussian process (GP), which allows us to eliminate this issue in a $f(Q)$ model-independent way. In particular, we use the 57 Hubble measurements coming from cosmic chronometers and the radial Baryon acoustic oscillations (BAO) to reconstruct $H(z)$ and its derivatives $H'(z)$, $H''(z)$, which resulting lead us to reconstruct region of $f(Q)$, without any assumptions. The obtained mean curve along $\Lambda$CDM constant in the reconstructed region follows a quadratic behavior. This motivates us to propose a new $f(Q)$ parametrization, i.e., $f(Q)= -2\Lambda+ \epsilon Q^2$, with the single parameter $\epsilon$, which signifies the deviations from $\Lambda$CDM cosmology. Further, we probe the widely studied power-law and exponential $f(Q)$ models against the reconstructed region and can improve the parameter spaces significantly compared with observational analysis. In addition, the direct Hubble measurements, along with the reconstructed $f(Q)$ function, allow the $H_0$ tension to be alleviated.<br />Comment: Accepted to Publication of Astrophysical Journal (ApJ)

Details

Database :
arXiv
Journal :
Astrophysical Journal (ApJ) 972(2) (2024) 172
Publication Type :
Report
Accession number :
edsarx.2404.13095
Document Type :
Working Paper
Full Text :
https://doi.org/10.3847/1538-4357/ad5cf4