English

Reconstruction of symmteric teleparallel gravity with energy conditions

General Relativity and Quantum Cosmology 2025-04-14 v1

Abstract

This research investigates the impact of modified gravity on cosmic scales, focusing on f(Q)f(Q) cosmology. By applying energy conditions, the study reconstructs various f(Q)f(Q) models, considering an accelerating Universe, quintessence, and a cosmological constant Λ\Lambda. Using up-to-date observational data, including the Supernova Pantheon sample and cosmic chronometer data, Hubble constants H0H_0 are estimated as 70.370.92+0.8470.37^{+0.84}_{-0.92} km/sec/Mpc (from H(z)H(z) data) and 70.020.25+0.4470.02^{+0.44}_{-0.25} km/sec/Mpc (from pantheon compilation of SN Ia data). The matter energy density parameter (Ω0m\Omega_{0m}) is calculated as 0.260.0100.0150.26^{0.015}_{-0.010}(OHD) and 0.270.0140.0250.27^{0.025}_{-0.014}(SN Ia). Furthermore, as a function of redshift zz, explicit expressions of f(Q)f(Q) and the EOS parameter ω\omega are produced, and their graphical analysis describes the late time acceleration of the Universe without the usage of dark energy.

Keywords

Cite

@article{arxiv.2311.16527,
  title  = {Reconstruction of symmteric teleparallel gravity with energy conditions},
  author = {Irfan Mahmood and Hira Sohail and Allah Ditta and S. H. Shekh and Anil Kumar Yadav},
  journal= {arXiv preprint arXiv:2311.16527},
  year   = {2025}
}

Comments

11 pages, 7 Figures