Observational Constraints on Gravity in the Presence of DBI-Essence Scalar Field
arXiv:2606.21839
Abstract
We investigate late-time cosmology in extended symmetric teleparallel gravity coupled to a Dirac-Born-Infeld (DBI) scalar field within gravity, where is the non-metricity scalar and is the trace of the matter energy-momentum tensor. Working on a spatially flat Friedmann-Lemaître-Robertson-Walker background and treating the cosmic medium as an effective perfect fluid, we derive the background field equations for gravity and obtain analytic solutions for the linear choice . We then constrain the model parameters with a Markov Chain Monte Carlo analysis using Hubble-rate data, DESI BAO (DR2) measurements, and the Pantheon+SHOES Type~Ia supernova sample. The joint posteriors (Tables II and III) are broadly consistent with current late-time constraints and allow a direct comparison with CDM, quantifying the departures driven by the coupling and the DBI sector. Although the model does not reproduce every observational feature exactly, it provides a statistically viable alternative avenue to the standard paradigm and a useful framework for exploring potential remedies to existing tensions, including the discrepancy, without claiming a definitive resolution.
20 pages, 10 figures, 6 tables. All constructive comments are welcome, not only requests for additional citations