Interacting scalar field dark matter and stepped dark radiation in an extended Wess-Zumino dark radiation model
arXiv:2512.06719 · doi:10.1016/j.dark.2026.102434
Abstract
We extend the Wess-Zumino dark radiation (WZDR) model by replacing cold dark matter with scalar field dark matter and introducing a pure momentum coupling between the scalar field and stepped dark radiation. This coupling avoids excessive early-universe damping, thereby preserving the predictive power of the WZDR framework while offering a potential mechanism for exploring the Hubble and tensions.Using a combination of cosmic microwave background, baryon acoustic oscillations, Type Ia supernovae, the SH0ES measurement, Dark Energy Survey Year 3 (DES) data, and Atacama Cosmology Telescope data, we constrain the model. When only one of the SH0ES and DES priors is included, the new model outperforms WZDR in and ; with both priors, it is disfavored. Using the latest cosmological data, we find that at 68% C.L. the coupled model gives km/s/Mpc and , close to the WZDR values of and . Both models raise effectively, but the new model only marginally reduces , which remains above the CDM prediction. The coupling is weak, with (95% C.L.), and performs worse than WZDR in both and AIC. Hence, although it does not fully resolve the tensions, this work provides a useful reference for studies of interacting dark sectors.
14 pages, 7 figures