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Fuelling the search for light dark matter-electron scattering with spherical proportional counters

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arxiv 2110.02985 v3 pith:2QM7RBED submitted 2021-10-06 hep-ph astro-ph.COhep-ex

Fuelling the search for light dark matter-electron scattering with spherical proportional counters

classification hep-ph astro-ph.COhep-ex
keywords sensitivityscatteringdarkdarkspheredetectorsdm-electronfiveisobutane
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Dark matter (DM) detectors employing a Spherical Proportional Counter (SPC) have demonstrated a single-electron detection threshold and are projected to have small background rates. We explore the sensitivity to DM-electron scattering with SPC detectors in the context of DarkSphere, a proposal for a 300 cm diameter fully-electroformed SPC. SPCs can run with different gases, so we investigate the sensitivity for five targets: helium, neon, xenon, methane, and isobutane. We use tools from quantum chemistry to model the atomic and molecular systems, and calculate the expected DM induced event rates. We find that DarkSphere has the potential to improve current exclusion limits on DM masses above 4 MeV by up to five orders of magnitude. Neon is the best all-round gas target and provides good sensitivity to scenarios with both light and heavy mediators. Gas mixtures, where methane or isobutane is added to a noble gas, can extend the sensitivity at lower masses. Our study highlights the currently untapped potential of SPCs to search for DM-electron scattering in the MeV-to-GeV DM mass range.

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