We revisit the possibility of using cosmological observations to constrain models that involve interactions between neutrinos and dark matter. We show that small-scale measurements of the cosmic microwave background with a few per cent accuracy are critical to uncover unique signatures from models with tiny couplings that would require a much higher sensitivity at lower multipoles, such as those probed by the Planck satellite. We analyze the high-multipole data released by the Atacama Cosmology Telescope, both independently and in combination with Planck and Baryon Acoustic Oscillation measurements, finding a compelling preference for a non-vanishing coupling, log10uνDM=−5.20−0.74+1.2 at 68% CL. This aligns with other CMB-independent probes, such as Lyman-α. We illustrate how this coupling could be accounted for in the presence of dark matter interactions with a sterile neutrino.
@article{arxiv.2303.16895,
title = {New insights on $\nu$-DM Interactions},
author = {Philippe Brax and Carsten van de Bruck and Eleonora Di Valentino and William Giarè and Sebastian Trojanowski},
journal= {arXiv preprint arXiv:2303.16895},
year = {2023}
}
Comments
5 pages, 3 figures. V2: edited to match the version published in MNRAS Letters