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Scalar dark matter in the radio-frequency band: atomic-spectroscopy search results

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arxiv 1905.02968 v3 pith:VIJKDVFU submitted 2019-05-08 physics.atom-ph hep-ph

classification physics.atom-phhep-ph
keywords darkmatterscalarsearchatomicconstantsconstraintscouplings
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Among the prominent candidates for dark matter are bosonic fields with small scalar couplings to the Standard-Model particles. Several techniques are employed to search for such couplings and the current best constraints are derived from tests of gravity or atomic probes. In experiments employing atoms, observables would arise from expected dark-matter-induced oscillations in the fundamental constants of nature. These studies are primarily sensitive to underlying particle masses below $10^{-14}$ eV. We present a method to search for fast oscillations of fundamental constants using atomic spectroscopy in cesium vapor. We demonstrate sensitivity to scalar interactions of dark matter associated with a particle mass in the range $8\cdot10^{-11}$ to $4\cdot 10^{-7}$ eV. In this range our experiment yields constraints on such interactions, which within the framework of an astronomical-size dark matter structure, are comparable with, or better than, those provided by experiments probing deviations from the law of gravity.

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    hep-ph 2019-09 conditional novelty 6.0 of 10

    XENON1T S2 data constrain the solar scalar-electron coupling below 2e-15 at 90% CL, about three times weaker than the best stellar cooling bound.

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