arXiv · 2605.03477
Self-Interaction Bounds on Ultralight Dark Matter Couplings to Matter
Abstract
Ultralight dark matter (ULDM) couplings to matter fields and ULDM self-interactions are typically treated as independent probes. However, since the ULDM-matter couplings unavoidably induce self-interactions through quantum loop corrections, bounds on self-interacting ULDM from astrophysical and cosmological observations will also limit the coupling strength to matter. Applying this argument, we find that self-interaction bounds can impose strong constraints on the linear ULDM couplings to neutrinos, excluding a large portion of parameter space that is widely considered for probing ULDM via neutrino oscillation experiments. In addition, the self-interaction bounds also limit the quadratic ULDM couplings to electrons and light quarks, which can become stronger than from the stringent test of equivalence-principle violation. Our results demonstrate that the extreme observational sensitivity of cosmic microwave background and structure formations to repulsive self-interactions can robustly translate into powerful constraints on the ULDM interactions with fundamental particles.
Explore related subjects
Keep this discovery
Mohammad Aghaie, Shao-Ping Li. 2026-05-05. Self-Interaction Bounds on Ultralight Dark Matter Couplings to Matter. https://arxiv.org/abs/2605.03477
Cite the original work for its findings. Save a collection to share your selection of sources.