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Dark matter bound states via emission of scalar mediators

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abstract

If dark matter (DM) couples to a force carrier that is much lighter than itself, then it may form bound states in the early universe and inside haloes. While bound-state formation via vector emission is known to be efficient and have a variety of phenomenological implications, the capture via scalar emission typically requires larger couplings and is relevant to more limited parameter space, due to cancellations in the radiative amplitude. However, this result takes into account only the trilinear DM-DM-mediator coupling. Theories with scalar mediators include also a scalar potential, whose couplings may participate in the radiative transitions. We compute the contributions of these couplings to the radiative capture, and determine the parameter space in which they are important.

fields

hep-ph 1

years

2026 1

verdicts

UNVERDICTED 1

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  • Constraints on a Light Leptophilic Scalar from Dark-Sector Couplings hep-ph · 2026-05-26 · unverdicted · none · ref 69 · internal anchor

    A parameter space analysis of a leptophilic scalar mediator model for Majorana dark matter yields a viable sub-GeV region after applying relic density, cosmological, astrophysical, and laboratory constraints.