Scalar-Mediated Inelastic Dark Matter as a Solution to Small-Scale Structure Anomalies
Abstract
We propose a scalar-mediated Self-Interacting Dark Matter (SIDM) model to address small-scale structure anomalies such as the core-cusp and diversity problems. The model is composed by a leptophilic scalar mediator and a pseudo-Dirac dark matter candidate with a mass splitting of 100ev.We imposed a dark discrete symmetry forbids tree-level elastic scattering. Therefore creates kinematic threshold that suppresses scattering in ultra-faint satellite galaxies while enabling large self-interaction cross-sections in dwarf galaxies via resonant enhancement. To satisfy Big Bang Nucleosynthesis (BBN) requirements, we introduce a dimension-5 magnetic dipole operator that enable the decay of the excited state (). This operator also provides a unique, low-threshold signal for direct detection experiments, characterized by a distinct recoil spectrum. We identify a benchmark parameter space around ( GeV, MeV) where non-perturbative coupled-channel dynamics successfully reconcile astrophysical observations with cosmological bounds, including CMB constraints on annihilation.
Keywords
Cite
@article{arxiv.2512.18959,
title = {Scalar-Mediated Inelastic Dark Matter as a Solution to Small-Scale Structure Anomalies},
author = {Zihan Wang},
journal= {arXiv preprint arXiv:2512.18959},
year = {2026}
}