We use Super-K data to place new strong limits on interactions of sub-GeV Dark Matter (DM) with nuclei, that rely on the DM flux inevitably induced by cosmic-ray upscatterings. We derive analogous sensitivities at Hyper-K and DUNE and compare them with others, e.g. at JUNO. Using simplified models, we find that our proposal tests genuinely new parameter space, allowed both by theoretical consistency and by other direct detection experiments, cosmology, meson decays and our recast of monojet. Our results thus motivate and shape a new physics case for any large volume detector sensitive to nuclear recoils.

Neutrino experiments probe hadrophilic light dark matter / Ema Y.; Sala F.; Sato R.. - In: SCIPOST PHYSICS. - ISSN 2542-4653. - ELETTRONICO. - 10:3(2021), pp. 072.1-072.26. [10.21468/SCIPOSTPHYS.10.3.072]

Neutrino experiments probe hadrophilic light dark matter

Sala F.;
2021

Abstract

We use Super-K data to place new strong limits on interactions of sub-GeV Dark Matter (DM) with nuclei, that rely on the DM flux inevitably induced by cosmic-ray upscatterings. We derive analogous sensitivities at Hyper-K and DUNE and compare them with others, e.g. at JUNO. Using simplified models, we find that our proposal tests genuinely new parameter space, allowed both by theoretical consistency and by other direct detection experiments, cosmology, meson decays and our recast of monojet. Our results thus motivate and shape a new physics case for any large volume detector sensitive to nuclear recoils.
2021
Neutrino experiments probe hadrophilic light dark matter / Ema Y.; Sala F.; Sato R.. - In: SCIPOST PHYSICS. - ISSN 2542-4653. - ELETTRONICO. - 10:3(2021), pp. 072.1-072.26. [10.21468/SCIPOSTPHYS.10.3.072]
Ema Y.; Sala F.; Sato R.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/908083
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