Radial velocity statistics of cosmic voids as a probe of interacting dark energy
arXiv:2607.13362
Abstract
Due to their vast sizes and extremely low densities, the dynamics of cosmic voids are largely decoupled from complex, small-scale baryonic physics and are highly sensitive to the background expansion of the Universe. This makes them clean and sensitive probes of dark energy's properties. Using N-body simulations, we show that the void radial velocity and velocity dispersion profiles are sensitive to the Type 3 interacting dark energy model parameters, the momentum coupling () and the scalar field parameter . Within the range of the best-fit values of and constrained by Planck CMB, DESI BAO, and DES-Y5 supernova data, we find up to deviations in the void radial-velocity and velocity-dispersion profile spans relative to the uncoupled scenario, which can be well-approximated by a 4-parameter quadratic regression model. This demonstrates that the void radial velocity statistics provide an independent and observationally accessible probe of the dark-sector interaction in the Type 3 model.
14 pages, 2 main + 2 appendix figures