arXiv · 0909.0753
Atomic Dark Matter
Abstract
We propose that dark matter is dominantly comprised of atomic bound states. We build a simple model and map the parameter space that results in the early universe formation of hydrogen-like dark atoms. We find that atomic dark matter has interesting implications for cosmology as well as direct detection: Protohalo formation can be suppressed below $M_{proto} \sim 10^3 - 10^6 M_{\odot}$ for weak scale dark matter due to Ion-Radiation interactions in the dark sector. Moreover, weak-scale dark atoms can accommodate hyperfine splittings of order $100 \kev$, consistent with the inelastic dark matter interpretation of the DAMA data while naturally evading direct detection bounds.
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David E. Kaplan, Gordan Z. Krnjaic, Keith R. Rehermann, Christopher M. Wells. 2009-09-03. Atomic Dark Matter. https://doi.org/10.1088/1475-7516/2010/05/021
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