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KeV Scale Frozen-in Self-Interacting Fermionic Dark Matter
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abstract
We present a model in which the dark matter particle is frozen-in at MeV scale. In this model, the mediator between the standard model sector and the dark sector can automatically provide a self-interaction for dark matter. The interaction strength is naturally to be the in the region in favor of the cluster mass deficit anomaly. Due to the self-scattering, the Lyman-$\alpha$ constraint can be relaxed to $m_D \gtrsim 2 $ keV. In this region the self-interaction and the Fermi pressure both play roles on forming a dark matter core at the center of the dwarf galaxies.
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Cited by 1 Pith paper
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Probing the freeze-in mechanism in dark matter models with $U(1)^\prime$ gauge extensions
A new calculation of freeze-in dark matter in U(1)B-L models shows XENON1T already constrains the parameter space and maps the targets for future experiments.
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