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On Dark Matter Interactions with the Standard Model through an Anomalous $Z'$

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arxiv 1707.00709 v2 pith:KRAQMCUD submitted 2017-07-03 hep-ph astro-ph.COastro-ph.HE

classification hep-phastro-ph.COastro-ph.HE
keywords anomalousannihilationsdetectionfermionsgammamattermodelsannihilation
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abstract

We study electroweak scale Dark Matter (DM) whose interactions with baryonic matter are mediated by a heavy anomalous $Z'$. We emphasize that when the DM is a Majorana particle, its low-velocity annihilations are dominated by loop suppressed annihilations into the gauge bosons, rather than by p-wave or chirally suppressed annihilations into the SM fermions. Because the $Z'$ is anomalous, these kinds of DM models can be realized only as effective field theories (EFTs) with a well-defined cutoff, where heavy spectator fermions restore gauge invariance at high energies. We formulate these EFTs, estimate their cutoff and properly take into account the effect of the Chern-Simons terms one obtains after the spectator fermions are integrated out. We find that, while for light DM collider and direct detection experiments usually provide the strongest bounds, the bounds at higher masses are heavily dominated by indirect detection experiments, due to strong annihilation into $W^+W^-$, $ZZ$, $Z\gamma$ and possibly into $gg$ and $\gamma\gamma$. We emphasize that these annihilation channels are generically significant because of the structure of the EFT, and therefore these models are prone to strong indirect detection constraints. Even though we focus on selected $Z'$ models for illustrative purposes, our setup is completely generic and can be used for analyzing the predictions of any anomalous $Z'$-mediated DM model with arbitrary charges.

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Cited by 1 Pith paper

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  1. Probing triple-gauge couplings in anomalous gauge theories at hadron and lepton colliders

    hep-ph 2025-01 conditional novelty 5.0 of 10

    Anomalous Z'ZZ, Z'Zγ, and Z'γγ couplings from a muonic U(1)' model are beyond HL-LHC reach but potentially discoverable at CLIC and a 100 TeV pp collider.

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