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Freeze-in as a Complementary Process to Freeze-Out

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arxiv 2407.04809 v1 pith:CGLU6GYD submitted 2024-07-05 hep-ph

Freeze-in as a Complementary Process to Freeze-Out

classification hep-ph
keywords densitycandidatefreeze-outmodelparticlerelicfreeze-inproblem
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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There are many extensions of the Standard Model with a dark matter (DM) candidate obtained via the freeze-out mechanism. It can happen that after all experimental and theoretical constraints are taken into account, all parameter points have a relic density below the experimentally measured value. This means that the models solve only partially the DM problem, and at least one more candidate is needed. In this work we show that it is possible to further extend the model with a DM candidate obtained via the freeze-in mechanism to be in agreement with the relic density experimental measurement. Once the relic density problem is solved with this addition, new questions are raised. This new model with at least two DM candidates could have a freeze-out undetectable DM particle both in direct and indirect detection. This could happen if the freeze-out DM particle would have a very low density. Hence, a collider DM hint via excess in the missing energy with no correspondence in direct and indirect detection experiments, could signal the existence of a Feebly Interacting Massive Particle (FIMP). Conversely, if a DM particle is found and a particular model can explain all observables except the correct relic density, an extension with an extra FIMP would solve the problem. The freeze-in DM candidate, due to the small portal couplings, will not change the remaining phenomenology.

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Cited by 2 Pith papers

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  1. Mixed Freeze-In and Freeze-Out Histories and Dark-Sector Decays in a $\mathbb{Z}_4$ Two-Scalar Model

    hep-ph 2026-02 conditional novelty 6.0

    A Z4 two-scalar Higgs-portal dark matter model stays viable under LZ exclusions when one or both scalars are produced via freeze-in, and late dark-sector decays generate SuperWIMP, injection-assisted freeze-out, and s...

  2. Towards a Unified Framework for Pseudo-Nambu-Goldstone Dark Matter and Electroweak Baryogenesis

    hep-ph 2025-09 unverdicted novelty 6.0

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