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Indirect detection, direct detection, and collider detection cross-sections for a 70 GeV dark matter WIMP

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arxiv 2210.05380 v1 pith:3GZSV52S submitted 2022-10-08 hep-ph

classification hep-ph
keywords darkdetectionmattercross-sectionannihilationconsistentdatadirect
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Assuming a dark matter fraction $\Omega_{DM} = 0.27$ and a reduced Hubble constant $h = 0.73$, we obtain a value of 70 GeV/c$^2$ for the mass of the dark matter WIMP we have previously proposed. We also obtain a value for the annihilation cross section given by $\langle \sigma_{ann} v \rangle = 1.19 \times 10^{-26} $ cm$^3$/s in the present universe, consistent with the current limits for dwarf spheroidal galaxies. Both the mass and cross-section are consistent with analyses of the Galactic-center gamma rays observed by Fermi-LAT and the antiprotons observed by AMS-02 if these data are interpreted as resulting from dark matter annihilation. The spin-independent cross-section for direct detection in Xe-based experiments is estimated to be slightly above $10^{-48}$ cm$^2$, presumably just within reach of the LZ and XENONnT experiments with $\gtrsim 1000$ days of data taking. The cross-section for production in high-energy proton collisions via vector boson fusion is estimated to be $\sim 1$ femtobarn, possibly within reach of the high-luminosity LHC, with $\ge 140$ GeV of missing energy accompanied by two jets.

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  1. Cross-sections and experimental signatures for detection of a well-defined dark matter WIMP

    hep-ph 2025-06 conditional novelty 5.0 of 10

    Predicts that a 70 GeV bosonic dark matter WIMP, if it exists, can be discovered at the HL-LHC with >5σ significance after optimized cuts.

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