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Weak mixing below the weak scale in dark-matter direct detection
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If dark matter couples predominantly to the axial-vector currents with heavy quarks, the leading contribution to dark-matter scattering on nuclei is either due to one-loop weak corrections or due to the heavy-quark axial charges of the nucleons. We calculate the effects of Higgs and weak gauge-boson exchanges for dark matter coupling to heavy-quark axial-vector currents in an effective theory below the weak scale. By explicit computation, we show that the leading-logarithmic QCD corrections are important, and thus resum them to all orders using the renormalization group.
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Cited by 1 Pith paper
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The third-generation-philic WIMP: an EFT analysis
A fermionic dark matter particle interacting mainly with third-generation fermions is allowed by current direct-detection bounds in a 1-2 TeV window that the XLZD experiment will fully cover.
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