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Dark Matter Constraints from Isomeric $^{\bf 178m}$Hf

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arxiv 2306.04442 v1 pith:A3MP77KX submitted 2023-06-07 nucl-ex hep-phhep-th

classification nucl-exhep-phhep-th
keywords darkmattergammaariseconstraintsdescribefluxinelastic
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We describe a first measurement of the radiation from a $^{\bf 178m}$Hf sample to search for dark matter. The $\gamma$ flux from this sample, possessed by Los Alamos National Laboratory nuclear chemistry, was measured with a Ge detector at a distance of 4 ft due to its high activity. We search for $\gamma$s that cannot arise from the radioactive decay of $^{\bf 178m}$Hf, but might arise from the production of a nuclear state due to the inelastic scattering with dark matter. The limits obtained on this $\gamma$ flux are then translated into constraints on the parameter space of inelastic dark matter. Finally, we describe the potential reach of future studies with $^{\bf 178m}$Hf.

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  1. Probing large mass-splitting inelastic Dark Matter with RES-NOVA

    astro-ph.CO 2026-07 conditional novelty 6.0 of 10

    A 32.4 g·d PbWO4 cryogenic detector reports the first direct limits on inelastic dark matter at mass splittings up to ~510 keV (SHM) and ~780 keV (LMC).

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