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Detecting Ultralight Bosonic Dark Matter via Absorption in Superconductors

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arxiv 1604.06800 v1 pith:L54NWBIR submitted 2016-04-22 hep-ph astro-ph.COhep-ex

Detecting Ultralight Bosonic Dark Matter via Absorption in Superconductors

classification hep-ph astro-ph.COhep-ex
keywords darkmattersuperconductingabsorptionconductiondetectinglightastrophysical
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Superconducting targets have recently been proposed for the direct detection of dark matter as light as a keV, via elastic scattering off conduction electrons in Cooper pairs. Detecting such light dark matter requires sensitivity to energies as small as the superconducting gap of O(meV). Here we show that these same superconducting devices can detect much lighter DM, of meV to eV mass, via dark matter absorption on a conduction electron, followed by emission of an athermal phonon. We demonstrate the power of this setup for relic kinetically mixed hidden photons, pseudoscalars, and scalars, showing the reach can exceed current astrophysical and terrestrial constraints with only a moderate exposure.

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    Leptophobic dark matter can excite plasmons in silicon through hadronic loops, and SENSEI data now constrain its nucleon cross section down to ~1e-31 cm^2 in the sub-MeV mass range.