English

Reconstructing cosmic expansion in $f(R, G)$ gravity using a log-periodic deceleration model

General Relativity and Quantum Cosmology 2025-06-10 v1

Abstract

We study the late-time cosmology in f(R,G)=R+αR2+βeγGf(R, G)=R+\alpha R^{2}+\beta e^{\gamma G}, using a logarithmic parametrization of the deceleration parameter q(z)=q0+q1sin[log(1+z)]q(z)=q_{0}+q_{1}sin[log(1+z)]. The Hubble parameter H(z)H(z) is reconstructed and model parameters are constrained via MCMC analysis using CC (3131), BAO (2626) and Pantheon+SHOES (17011701) datasets. Our results yield a Hubble constant in the range H0=71.7H_0 = 71.7--72.872.8 km/s/Mpc, consistent with late-time observations. The present deceleration parameter is found to be q0=0.484q_{0}=-0.484 to 0.517-0.517, while the evolution parameter q11q_{1}\approx 1, indicating increasing acceleration. The transition redshift shifts from ztr=0.879z_{tr}=0.879 (CC) to 0.7440.744 (CC+BAO+Pantheon+SHOES), supporting a dynamic acceleration phase. The model reproduces early radiation behavior with ω(z>>1)0.33\omega (z>>1) \approx 0.33 and predicts present-day values ω00.49\omega_{0} \approx -0.49. Energy conditions NEC and DEC are satisfied, while SEC is violated at late times. The statefinder parameters {r0,s0}=(0.866,0.046)\{r_0, s_0\} = (0.866, 0.046) lie near the Λ\LambdaCDM point. Estimated age of the Universe ranges from 13.0113.01 to 13.5913.59 Gyr. Thermodynamic analysis confirms consistency with the generalized second law. Overall, the model offers a viable and observationally consistent description of cosmic acceleration.

Keywords

Cite

@article{arxiv.2506.06388,
  title  = {Reconstructing cosmic expansion in $f(R, G)$ gravity using a log-periodic deceleration model},
  author = {Amit Samaddar and S. Surendra Singh},
  journal= {arXiv preprint arXiv:2506.06388},
  year   = {2025}
}

Comments

18 pages, 9 figures

R2 v1 2026-07-01T03:04:10.066Z