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Antisymmetric tensor portals to dark matter

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arxiv 2409.05915 v2 pith:DQGP5GY7 submitted 2024-09-07 hep-ph

classification hep-ph
keywords matterdarkcouplingfreeze-inscenariosantisymmetricconstantsfreeze-out
verification ladder T0 review T1 audit T2 compute T3 formal
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Both freeze-in of very weakly coupled dark matter and freeze-out of initially thermalized dark matter from the primordial heat bath provide interesting possibilities for dark matter creation in the early universe. Both scenarios allow for a calculation of baryon-dark matter coupling constants as a function of dark matter mass due to the constraint that freeze-in or freeze-out produce the observed dark matter abundance. Here we compare the resulting coupling constants in the two scenarios if dark matter couples to baryons through an antisymmetric tensor portal. The freeze-in scenario predicts much smaller coupling in agreement with the nonthermalization postulate. We find that the couplings as a function of mass behave very differently in the two scenarios.

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  1. Experimental signatures of Kalb-Ramond-like particles

    hep-ph 2025-01 conditional novelty 6.0 of 10

    Constraints on the mass and fermion couplings of Kalb-Ramond-like particles are derived from hydrogen hyperfine data, perturbative unitarity, and Bhabha scattering at 29 GeV and 136.23 GeV.

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