Search for Daily Modulation of MeV Dark Matter Signals with DAMIC-M

Dark matter (DM) particles with sufficiently large cross sections may scatter as they travel through Earth's bulk. The corresponding changes in the DM flux give rise to a characteristic daily modulation signal in detectors sensitive to DM-electron interactions. Here, we report results obtained...

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Veröffentlicht in:Physical review letters 2024-03, Vol.132 (10), p.101006-101006, Article 101006
Hauptverfasser: Arnquist, I, Avalos, N, Baxter, D, Bertou, X, Castelló-Mor, N, Chavarria, A E, Cuevas-Zepeda, J, Dastgheibi-Fard, A, De Dominicis, C, Deligny, O, Duarte-Campderros, J, Estrada, E, Gadola, N, Gaïor, R, Hossbach, T, Iddir, L, Kavanagh, B J, Kilminster, B, Lantero-Barreda, A, Lawson, I, Lee, S, Letessier-Selvon, A, Loaiza, P, Lopez-Virto, A, McGuire, K J, Mitra, P, Munagavalasa, S, Norcini, D, Paul, S, Piers, A, Privitera, P, Robmann, P, Scorza, S, Settimo, M, Smida, R, Traina, M, Vilar, R, Warot, G, Yajur, R, Zopounidis, J-P
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Sprache:eng
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Zusammenfassung:Dark matter (DM) particles with sufficiently large cross sections may scatter as they travel through Earth's bulk. The corresponding changes in the DM flux give rise to a characteristic daily modulation signal in detectors sensitive to DM-electron interactions. Here, we report results obtained from the first underground operation of the DAMIC-M prototype detector searching for such a signal from DM with MeV-scale mass. A model-independent analysis finds no modulation in the rate of 1  e^{-} events with sidereal period, where a DM signal would appear. We then use these data to place exclusion limits on DM in the mass range [0.53,2.7]  MeV/c^{2} interacting with electrons via a dark photon mediator. Taking advantage of the time-dependent signal we improve by ∼2 orders of magnitude on our previous limit obtained from the total rate of 1  e^{-} events, using the same dataset. This daily modulation search represents the current strongest limit on DM-electron scattering via ultralight mediators for DM masses around 1  MeV/c^{2}.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.132.101006