Searches for CE{\nu}NS and Physics beyond the Standard Model using Skipper-CCDs at CONNIE
Alexis A. Aguilar-Arevalo, Nicolas Avalos, Xavier Bertou, Carla Bonifazi, Gustavo Cancelo, Brenda A. Cervantes-Vergara, Claudio Chavez, Fernando Chierchie, Gustavo Coelho Corr\^ea, Juan Carlos D'Olivo, Jo\~ao dos Anjos, Juan Estrada, Guillermo Fernandez Moroni

TL;DR
CONNIE uses advanced Skipper-CCDs to detect reactor neutrinos and search for physics beyond the Standard Model, achieving record low detection thresholds and setting new limits on neutrino interactions and dark matter.
Contribution
First application of Skipper-CCDs in reactor neutrino detection, demonstrating improved sensitivity and potential for future rare interaction searches.
Findings
No excess neutrino events observed, setting upper limits on interaction rates.
Achieved a record low detection threshold of 15 eV.
Set the best limits on dark matter-electron scattering cross-section for a surface experiment.
Abstract
The Coherent Neutrino-Nucleus Interaction Experiment (CONNIE) aims to detect the coherent scattering (CENS) of reactor antineutrinos off silicon nuclei using thick fully-depleted high-resistivity silicon CCDs. Two Skipper-CCD sensors with sub-electron readout noise capability were installed at the experiment next to the Angra-2 reactor in 2021, making CONNIE the first experiment to employ Skipper-CCDs for reactor neutrino detection. We report on the performance of the Skipper-CCDs, the new data processing and data quality selection techniques and the event selection for CENS interactions, which enable CONNIE to reach a record low detection threshold of 15 eV. The data were collected over 300 days in 2021-2022 and correspond to exposures of 14.9 g-days with the reactor-on and 3.5 g-days with the reactor-off. The difference between the reactor-on and off event rates shows no…
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