Search for dark matter decay of the free neutron from the UCNA experiment: n→χ+e+e
It has been proposed recently that a previously unobserved neutron decay branch to a dark matter particle (χ) could account for the discrepancy in the neutron lifetime observed in experiments that use two different measurement techniques. One of the possible final states discussed includes a single...
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Veröffentlicht in: | Physical review. C 2018-05, Vol.97 (5) |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | It has been proposed recently that a previously unobserved neutron decay branch to a dark matter particle (χ) could account for the discrepancy in the neutron lifetime observed in experiments that use two different measurement techniques. One of the possible final states discussed includes a single χ along with an e+e– pair. We use data from the UCNA (Ultracold Neutron Asymmetry) experiment to set limits on this decay channel. Coincident electron-like events are detected with ~4π acceptance using a pair of detectors that observe a volume of stored ultracold neutrons. The summed kinetic energy (Ee+e–) from such events is used to set limits, as a function of the χ mass, on the branching fraction for this decay channel. For χ masses consistent with resolving the neutron lifetime discrepancy, we exclude this as the dominant dark matter decay channel at >>5σ level for 100 < Ee+e– < 644keV. In conclusion, if the χ+e+e– final state is not the only one, we set limits on its branching fraction of 90% confidence level. |
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ISSN: | 2469-9985 2469-9993 |
DOI: | 10.1103/PhysRevC.97.052501 |