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Nucleus Capture by Macroscopic Dark Matter

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arxiv 1912.02813 v2 pith:G5XSXZBJ submitted 2019-12-05 hep-ph hep-ex

classification hep-phhep-ex
keywords darkmattercaptureenergymacroscopicnucleusradiativeanalytic
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abstract

For a class of macroscopic dark matter with a large interaction strength with Standard Model particles, a nucleus could be captured by the dense, heavy dark matter as it traverses ordinary material. The radiated photon carries most of the binding energy and is a characteristic signature for dark matter detection. We develop analytic formulas and present numerical results for this radiative capture process in the low energy, non-dipole limit. Large-volume neutrino detectors like NO$\nu$A, JUNO, DUNE and Super(Hyper)-K may detect multi-hit or single-hit radiative capture events and can search for dark matter up to one gram in mass.

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    Q-ball perturbation theory is shown to remain valid for wavepacket amplitudes below about 10^-2 of the Q-ball background, and the analysis is extended to two-field FLS Q-balls.

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