arXiv · 2512.16043
Deconstructive Composite Dark Matter Detection
Abstract
We investigate the detection of composite dark matter that disassembles into a cascade while crossing the Earth. This occurs for loosely bound composite dark matter, where the binding energy per constituent is small, such that scattering with Standard Model nuclei typically imparts enough energy to dissociate a constituent from its composite. Trajectories and cascade profiles are found for dissociated constituents that are further diverted by scattering through the Earth. Such scattering cascades are a common feature of TeV-scale weakly-interacting dark matter loosely bound in composites. We identify underground detector signatures of constituent cascades that depend on composite characteristics; these signatures include non-collinear multiple scatters in detectors, parameter-dependent timing separation of multiscatter events, and regions of parameter space where a dark matter cascade would leave a coincident signature in different underground laboratories.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yilda Boukhtouchen, Joseph Bramante, Christopher Cappiello, Melissa Diamond. 2025-12-17. Deconstructive Composite Dark Matter Detection. https://arxiv.org/abs/2512.16043
Cite the original work for its findings. Save a collection to share your selection of sources.