paper

Late-Time Cosmic Acceleration in Hořava-Lifshitz Gravity: Observational Evidence from Cosmic Chronometers and Pantheon+SHOES Datasets

arXiv:2608.10242

Abstract

We investigate the cosmological implications of Horava-Lifshitz (HL) gravity using a redshift-dependent deceleration parameter of the form , from which the Hubble parameter is derived analytically. This parametrization captures the transition from early deceleration to late-time acceleration, with a logarithmic correction governed by that distinguishes it from standard kinematic models. Model parameters , , , and are constrained via MCMC using cosmic chronometer (CC) and Pantheon+SHOES datasets, individually and in combination. Across all dataset combinations, , confirming ongoing accelerated expansion. The reconstructed is consistent with CDM at low redshifts, with mild deviations at higher redshifts. The statefinder parameters indicate that the model evolves smoothly, beginning with Chaplygin gas-type behaviour, crossing the CDM fixed point, and settling into a quintessence-like phase at late times. The diagnostic reveals negative slopes throughout, indicating quintessence-like dark energy (). Present-day cosmic age estimates from the individual and combined datasets yield Gyr, in agreement with Planck 2018 constraints.