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arxiv: 1902.08623 · v1 · submitted 2019-02-22 · ✦ hep-ph · astro-ph.CO

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Making dark matter out of light: freeze-in from plasma effects

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classification ✦ hep-ph astro-ph.CO
keywords channelfreeze-inlightproductionabundancedarkdecayseffects
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Dark matter (DM) could couple to particles in the Standard Model (SM) through a light vector mediator. In the limit of small coupling, this portal could be responsible for producing the observed DM abundance through a mechanism known as freeze-in. Furthermore, the requisite DM-SM couplings provide a concrete benchmark for direct and indirect searches for DM. In this paper, we present updated calculations of the relic abundance for DM produced by freeze-in through a light vector mediator. We identify an additional production channel: the decay of photons that acquire an in-medium plasma mass. These plasmon decays are a dominant channel for DM production for sub-MeV DM masses, and including this channel leads to a significant reduction in the predicted signal strength for DM searches. Accounting for production from both plasmon decays and annihilations of SM fermions, the DM acquires a highly non-thermal phase space distribution which impacts the cosmology at later times; these cosmological effects will be explored in a companion paper.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Electronic Direct Detection of Light Dark Matter with Intermediate-Mass Mediators

    hep-ph 2026-05 unverdicted novelty 5.0

    For sub-GeV dark matter, the light and heavy mediator mass limits in direct detection are separated by up to three orders of magnitude in mediator mass, enabling precise sensitivity calculations for Si, Ge, and DAMIC-...

  2. New benchmarks for direct detection of freeze-in dark matter in vector portal models

    hep-ph 2026-03 unverdicted novelty 5.0

    Freeze-in at low reheating temperatures allows MeV-scale dark matter in vector portal models to be probed by future direct detection experiments in nuclear recoils for 50-500 MeV masses and via enhanced solar neutrino...