Late-time cosmic dynamics in gravity with recent observations
arXiv:2511.17903
Abstract
In this work, we investigate the late-time cosmic dynamics in the framework of non-linear gravity, adopting the functional form . To explore the dark energy behavior, we assume an oscillatory parametric equation of state, , which allows smooth deviations from the cosmological constant. Using a joint MCMC analysis with the latest Hubble 31 chronometer data, DESI DR2 BAO measurements, and Type Ia supernova samples (Pantheon+, DES-SN5Y and Union 3), we obtain well-constrained parameters around and , consistent with Planck 2018 and other current observations. The model exhibits a clear transition from deceleration to acceleration with --, satisfies the NEC and DEC while violating the SEC and yields present EoS values close to , reproducing CDM behavior at late times. The derived Universe ages () agree well with CMB and stellar constraints, confirming that the proposed oscillatory model provides an observationally consistent and dynamically viable alternative to CDM cosmology.
16 pages, 7 figures